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F25p6 states sorted by short name
Matthew Thompson edited this page Sep 26, 2025
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2 revisions
__FORCETOC__
Sorted 510 states by SHORT name
| Name | Component | Units | Dim | Long name |
|---|---|---|---|---|
| AERO | Solar | kg kg-1 | xyz | aerosols |
| AERO | Irrad | 1 | xyz | aerosols |
| AIRDENS | GOCART | kgm^3 | xyz | air density |
| AIRDENS | GMIchem | kg m-3 | xyz | air density |
| AIRDENS | StratChem | kgm3 | xyz | air density |
| AIRDENS | CARMA | kg m-3 | xyz | Air density |
| AIRDENS | GMIchem | kg m-3 | xyz | Air density |
| ALBEDO | GMIchem | 1 | xy | Surface albedo |
| ALBNF | Solar | 1 | xy | surface albedo for near infrared diffuse |
| ALBNR | Solar | 1 | xy | surface albedo for near infrared beam |
| ALBVF | GMIchem | 1 | xy | surface albedo for visible diffuse |
| ALBVF | Solar | 1 | xy | surface albedo for visible diffuse |
| ALBVR | Solar | 1 | xy | surface albedo for visible beam |
| ALW | Surface | W m-2 | xy | linearization of surface upwelling longwave flux |
| ALW | Lake | W m-2 | tile | linearization of surface upwelling longwave flux |
| ALW | Landice | W m-2 | tile | linearization of surface upwelling longwave flux |
| ALW | Catch | W m-2 | tile | linearization of surface upwelling longwave flux |
| ALW | Saltwater | W m-2 | tile | linearization of surface upwelling longwave flux |
| AREA | GOCART | m^2 | xy | agrid cell area |
| ASNOW | GMIchem | 1 | xy | fractional area of land snowcover |
| BCphilic | GAAS | kgkg | xyz | Hydrophilic Black Carbon Mixing Ratio |
| BCphobic | GAAS | kgkg | xyz | Hydrophobic Black Carbon Mixing Ratio |
| BLW | Surface | W m-2 K-1 | xy | linearization of surface upwelling longwave flux |
| BLW | Lake | W m-2 K-1 | tile | linearization of surface upwelling longwave flux |
| BLW | Landice | W m-2 K-1 | tile | linearization of surface upwelling longwave flux |
| BLW | Catch | W_m-2 K-1 | tile | linearization of surface upwelling longwave flux |
| BLW | Saltwater | W m-2 K-1 | tile | linearization of surface upwelling longwave flux |
| BSTAR | Turbulence | m s-2 | xy | surface bouyancy scale |
| CFC11 | Irrad | pppv | xyz | CFC11 concentration |
| CFC12 | Irrad | pppv | xyz | CFC12 concentration |
| CH4 | GOCART | molmol | xyz | Methane |
| CH4 | Irrad | pppv | xyz | methane concentration |
| CLCN | Turbulence | 1 | xyz | cloud fraction |
| CLDTT | GMIchem | 1 | xy | total cloud area fraction |
| CLDTT | GMIchem | 1 | xy | Total cloud area fraction |
| CLLS | Turbulence | 1 | xyz | cloud fraction |
| CM | Turbulence | kg m-2 s-1 | xy | surface momentum exchange coefficient |
| CMATM | Saltwater | kg m-2 s-1 | tile | surface exchange coefficient for momentum |
| CNV_MFC | GMIchem | kg m-2 s-1 | xyz | cumulative mass flux |
| CNV_MFC | GMIchem | kg m-2 s-1 | xyz | Convective mass flux |
| CNV_MFD | GMIchem | kg m-2 s-1 | xyz | detraining mass flux |
| CNV_MFD | GMIchem | kg m-2 s-1 | xyz | Detraining mass flux |
| CN_PRCP | ChemEnv | kg m-2 s-1 | xy | Surface Conv. rain flux needed by land |
| CN_PRCP | GOCART | kgm^2s | xy | Surface Conv. rain flux needed by land |
| CN_PRCP | GMIchem | kg m-2 s-1 | xy | convective precipitation |
| CN_PRCP | CARMA | kg m-2 s-1 | xy | Surface Conv. rain flux needed by land |
| CN_PRCP | GMIchem | kg m-2 s-1 | xy | Convective precipitation |
| COSZ | Orad | 1 | xy | cosine of the solar zenith angle |
| CQ | Turbulence | kg m-2 s-1 | xy | surface moisture exchange coefficient |
| CQATM | Lake | kg m-2 s-1 | tile | surface exchange coefficient for moisture |
| CQATM | Landice | kg m-2 s-1 | tile | surface exchange coefficient for moisture |
| CQATM | Catch | kg m-2 s-1 | tile | surface exchange coefficient for moisture |
| CQATM | Saltwater | kg m-2 s-1 | tile | surface exchange coefficient for moisture |
| CT | Turbulence | kg m-2 s-1 | xy | surface heat exchange coefficient |
| CTATM | Lake | kg m-2 s-1 | tile | surface exchange coefficient for heat |
| CTATM | Landice | kg m-2 s-1 | tile | surface exchange coefficient for heat |
| CTATM | Catch | kg m-2 s-1 | tile | surface exchange coefficient for heat |
| CTATM | Saltwater | kg m-2 s-1 | tile | surface exchange coefficient for heat |
| DAIDTD | Ogcm | % day-1 | tile | ice area tendency dueto dynamics |
| DDEWL | Surface | kg m-2 s-1 | xy | derivative of dewfall wrt QS |
| DELP | GAAS | Pa | xyz | Pressure Thickness |
| DEVAP | Surface | kg m-2 s-1 | xy | derivative of evaporation wrt QS |
| DEVAP | Lake | kg m-2 s-1 | tile | derivative of evaporation |
| DEVAP | Landice | kg m-2 s-1 | tile | derivative of evaporation |
| DEVAP | Catch | kg m-2 s-1 | tile | derivative of evaporation wrt QS |
| DEVAP | Saltwater | kg m-2 s-1 | tile | derivative of evaporation |
| DEWL | Surface | kg m-2 s-1 | xy | dewfall |
| DFNIR | Lake | W m-2 | tile | surface downwelling nir diffuse flux |
| DFNIR | Landice | W m-2 | tile | surface downwelling nir diffuse flux |
| DFNIR | Catch | W m-2 | tile | surface downwelling nir diffuse flux |
| DFNIR | Saltwater | W m-2 | tile | surface downwelling nir diffuse flux |
| DFNIRN | Surface | 1 | xy | normalized surface downwelling nir diffuse flux |
| DFPAR | GMIchem | W m-2 | xy | surface downwelling par diffuse flux |
| DFPAR | Lake | W m-2 | tile | surface downwelling par diffuse flux |
| DFPAR | Landice | W m-2 | tile | surface downwelling par diffuse flux |
| DFPAR | Catch | W m-2 | tile | surface downwelling par diffuse flux |
| DFPAR | Saltwater | W m-2 | tile | surface downwelling par diffuse flux |
| DFPARN | Surface | 1 | xy | normalized surface downwelling par diffuse flux |
| DFRSL | Surface | kg m-2 s-1 | xy | derivative of frostfall wrt QS |
| DFU | Surface | N s m-3 | xy | derivative of eastward surface stress wrt Us |
| DFUVR | Lake | W m-2 | tile | surface downwelling uvr diffuse flux |
| DFUVR | Landice | W m-2 | tile | surface downwelling uvr diffuse flux |
| DFUVR | Catch | W m-2 | tile | surface downwelling uvr diffuse flux |
| DFUVR | Saltwater | W m-2 | tile | surface downwelling uvr diffuse flux |
| DFUVRN | Surface | 1 | xy | normalized surface downwelling uvr diffuse flux |
| DFV | Surface | N s m-3 | xy | derivative of northward surface stress wrt Us |
| DO3DT | Agcm | ppmv | xyz | ozone analysis increment |
| DOXANA | FVdycore | kg kg-1 | xyz | ozone increment from analysis |
| DOXANA | DynCore | kg kg-1 | xyz | ozone increment from analysis |
| DOXANA | ARIESg3 | kg kg-1 | xyz | ozone increment from analysis |
| DOXANA | DatmoDyn | kg kg-1 | xyz | ozone increment from analysis |
| DPEDT | Agcm | Pa | xyz | edge pressure analysis increment |
| DPEDT | FVdycore | Pa s-1 | xyz | edge pressure tendency |
| DPEDT | DynCore | Pa s-1 | xyz | edge pressure tendency |
| DPEDT | ARIESg3 | Pa s-1 | xyz | edge pressure tendency |
| DPEDT | DatmoDyn | Pa | xyz | air pressure |
| DQDT | GOCART | kgkgs | xyz | Q tendency - moist physics |
| DQDT | GMIchem | s-1 | xyz | specific humidity tendency due to moist |
| DQDT | CARMA | kg kg-1 s-1 | xyz | Q tendency - moist physics |
| DQDT | GMIchem | s-1 | xyz | Specific humidity tendency due to moist |
| DQVANA | FVdycore | kg kg-1 | xyz | specific humidity increment from analysis |
| DQVANA | DynCore | kg kg-1 | xyz | specific humidity increment from analysis |
| DQVANA | ARIESg3 | kg kg-1 | xyz | specific humidity increment from analysis |
| DQVANA | DatmoDyn | kg kg-1 | xyz | specific humidity increment from analysis |
| DQVDT | Agcm | kg kg-1 | xyz | specific humidity analysis increment |
| DRNIR | Lake | W m-2 | tile | surface downwelling nir beam flux |
| DRNIR | Landice | W m-2 | tile | surface downwelling nir beam flux |
| DRNIR | Catch | W m-2 | tile | surface downwelling nir beam flux |
| DRNIR | Saltwater | W m-2 | tile | surface downwelling nir beam flux |
| DRNIRN | Surface | 1 | xy | normalized surface downwelling nir beam flux |
| DRPAR | GMIchem | W m-2 | xy | surface downwelling par beam flux |
| DRPAR | Lake | W m-2 | tile | surface downwelling par beam flux |
| DRPAR | Landice | W m-2 | tile | surface downwelling par beam flux |
| DRPAR | Catch | W m-2 | tile | surface downwelling par beam flux |
| DRPAR | Saltwater | W m-2 | tile | surface downwelling par beam flux |
| DRPARN | Surface | 1 | xy | normalized surface downwelling par beam flux |
| DRUVR | Lake | W m-2 | tile | surface downwelling uvr beam flux |
| DRUVR | Landice | W m-2 | tile | surface downwelling uvr beam flux |
| DRUVR | Catch | W m-2 | tile | surface downwelling uvr beam flux |
| DRUVR | Saltwater | W m-2 | tile | surface downwelling uvr beam flux |
| DRUVRN | Surface | 1 | xy | normalized surface downwelling uvr beam flux |
| DSH | Surface | W m-2 K-1 | xy | derivative of sensible heat wrt dry static energy |
| DSH | Lake | W m-2 | tile | derivative of upward sensible heat flux |
| DSH | Landice | W m-2 | tile | derivative of upward sensible heat flux |
| DSH | Catch | W m-2 K-1 | tile | derivative of sensible heat wrt Ts |
| DSH | Saltwater | W m-2 | tile | derivative of upward sensible heat flux |
| DTDT | Agcm | K | xyz | temperature analysis increment |
| DTDT | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| DTDT | FVdycore | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| DTDT | DynCore | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| DTDT | ARIESg3 | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| DTDT | DatmoDyn | K s-1 | xyz | T tendency |
| DTG | Turbulence | X | xy | change of surface values of diffused quantity |
| DUDT | Agcm | m s-1 | xyz | eastward wind analysis increment |
| DUDT | Superdyn | m s-2 | xyz | eastward wind tendency |
| DUDT | FVdycore | m s-2 | xyz | eastward wind tendency |
| DUDT | DynCore | m s-2 | xyz | eastward wind tendency |
| DUDT | ARIESg3 | m s-2 | xyz | eastward wind tendency |
| DUDT | DatmoDyn | m s-1 s-1 | xyz | later |
| DVDT | Agcm | m s-1 | xyz | northward wind analysis increment |
| DVDT | Superdyn | m s-2 | xyz | northward wind tendency |
| DVDT | FVdycore | m s-2 | xyz | northward wind tendency |
| DVDT | DynCore | m s-2 | xyz | northward wind tendency |
| DVDT | ARIESg3 | m s-2 | xyz | northward wind tendency |
| DVDT | DatmoDyn | m s-1 s-1 | xyz | later |
| DVIDTD | Ogcm | cm day-1 | tile | ice volume tendency dueto dynamics |
| DZ | Surface | m | xy | surface layer height |
| DZ | Lake | m | tile | surface layer height |
| DZ | Landice | m | tile | surface layer height |
| DZ | Catch | m | tile | surface layer height |
| DZ | Saltwater | m | tile | surface layer height |
| EMIS | Irrad | 1 | xy | surface emissivity |
| ERGICE | Ogcm | J m-2 | tile | ice category layer internal energy |
| ERGSNO | Ogcm | J m-2 | tile | snow category layer internal energy |
| EVAP | Surface | kg m-2 s-1 | xy | evaporation |
| EVAP | Lake | kg m-2 s-1 | tile | evaporation |
| EVAP | Landice | kg m-2 s-1 | tile | evaporation |
| EVAP | Catch | kg m-2 s-1 | tile | evaporation |
| EVAP | Saltwater | kg m-2 s-1 | tile | evaporation |
| FCLD | GOCART | 1 | xyz | Cloud fraction for radiation |
| FCLD | GMIchem | 1 | xyz | cloud fraction for radiation |
| FCLD | Satsim | 1 | xyz | cloud area fraction |
| FCLD | Solar | 1 | xyz | cloud area fraction |
| FCLD | Irrad | 1 | xyz | cloud area fraction in atmosphere layer |
| FCLD | GMIchem | fraction | xyz | Cloud fraction for radiation |
| FRACI | GOCART | 1 | xy | ice covered fraction of tile |
| FRACICE | Saltwater | 1 | tile | ice covered fraction of tile |
| FRACICE | Ogcm | 1 | tile | fractional cover of seaice |
| FRLAKE | GOCART | 1 | xy | fraction of lake |
| FRLAKE | CARMA | 1 | xy | Fraction of Lake |
| FRLAND | ChemEnv | 1 | xy | fraction of land |
| FRLAND | GMIchem | 1 | xy | fraction of land |
| FRLAND | Moist | 1 | xy | areal land fraction |
| FRLAND | Turbulence | 1 | xy | land fraction |
| FRLAND | Satsim | 1 | xy | fraction of land |
| FRLANDICE | ChemEnv | 1 | xy | fraction of land ice |
| FRLANDICE | GMIchem | 1 | xy | fraction of land ice |
| FROCEAN | ChemEnv | 1 | xy | fraction of ocean |
| FROCEAN | Satsim | 1 | xy | fraction of ocean |
| FROCEAN | Orad | 1 | xy | ocean fraction of grid cell |
| FRSL | Surface | kg m-2 s-1 | xy | frostfall |
| GRN | GOCART | 1 | xy | greeness fraction |
| GRN | Catch | 1 | tile | greeness fraction |
| H | Orad | dyn-m | xyz | Layer mass |
| H2O2 | GOCART | molmol | xyz | Hydrogen peroxide |
| HCFC22 | Irrad | pppv | xyz | HCFC22 concentration |
| HFLUX | Ogcm | W m-2 | tile | heat flux bw saltwater ocean |
| HI | Ogcm | kg | tile | seaice skin layer mass |
| HI | DataSeaIce | m | xy | seaice skin layer depth |
| HW | Ogcm | kg | tile | water skin layer mass |
| HW | DataSea | m | xy | water skin layer depth |
| KH | Moist | m+2 s-1 | xyz | scalar diffusivity |
| KPAR | Saltwater | m-1 | tile | PAR extinction coefficient |
| LAI | GOCART | 1 | xy | leaf area index |
| LAI | GMIchem | 1 | xy | leaf area index |
| LAI | Catch | 1 | tile | leaf area index |
| LAI | GMIchem | 1 | xy | Leaf area index |
| LS_PRCP | Gwd | kg m-2 s-1 | xy | Total LS Surface precipitation flux |
| LWDNSRF | Surface | W m-2 | xy | surface downwelling longwave flux |
| LWDNSRF | Lake | W m-2 | tile | surface downwelling longwave flux |
| LWDNSRF | Landice | W m-2 | tile | surface downwelling longwave flux |
| LWDNSRF | Catch | W m-2 | tile | surface downwelling longwave flux |
| LWDNSRF | Saltwater | W m-2 | tile | surface downwelling longwave flux |
| LWI | GOCART | 1 | xy | land-ocean-ice mask |
| LWI | GMIchem | 1 | xy | land-ocean-ice mask |
| LWI | CARMA | 1 | xy | Land Ocean Ice Mask |
| LWI | GMIchem | 1 | xy | Land-ocean-ice mask |
| MCOSZ | Satsim | 1 | xy | mean cosine of the solar zenith angle |
| MPOND | Ogcm | m | tile | pond volume |
| MTR | Moist | X | xyz | tracers for moist |
| N2O | Irrad | pppv | xyz | nitrous oxide concentration |
| NCN_PRCP | GOCART | kgm^2s | xy | Non-convective precipitation |
| NCN_PRCP | CARMA | kg m-2 s-1 | xy | Non-convective precipitation |
| NO3 | GOCART | molmol | xyz | Nitrogen trioxide |
| O3 | GOCART | kgkg | xyz | ozone mass mixing ratio |
| O3 | Irrad | kg kg-1 | xyz | ozone mass mixing ratio |
| O3PPMV | mkiau | ppmv | xyz | ozone volume mixing ratio |
| OCphilic | GAAS | kgkg | xyz | Hydrophilic Organic Carbon Mixing Ratio |
| OCphobic | GAAS | kgkg | xyz | Hydrophobic Organic Carbon Mixing Ratio |
| OH | GOCART | molmol | xyz | Hydroxyl radical |
| OUSTAR3 | Ogcm | m+3 s-3 | tile | ocean ustar cubed |
| OX | Solar | mol mol-1 | xyz | odd-oxygen volume mixing ratio |
| PCU | Surface | kg m-2 s-1 | xy | liquid water convective precipitation |
| PCU | Catch | kg m-2 s-1 | tile | liquid water convective precipitation |
| PCU | Saltwater | kg m-2 s-1 | tile | liquid water convective precipitation |
| PENPAF | Ogcm | W m-2 | tile | net downward penetrating diffuse PAR flux |
| PENPAF | Orad | W m-2 | xy | net downward penetrating diffuse PAR flux |
| PENPAR | Ogcm | W m-2 | tile | net downward penetrating direct PAR flux |
| PENPAR | Orad | W m-2 | xy | net downward penetrating direct PAR flux |
| PENUVF | Ogcm | W m-2 | tile | net downward penetrating diffuse UV flux |
| PENUVF | Orad | W m-2 | xy | net downward penetrating diffuse UV flux |
| PENUVR | Ogcm | W m-2 | tile | net downward penetrating direct UV flux |
| PENUVR | Orad | W m-2 | xy | net downward penetrating direct UV flux |
| PFL_CN | GMIchem | kg m-2 s-1 | xyz | 3D flux of liquid convective precipitation |
| PFL_CN | GMIchem | kg m-2 s-1 | xyz | 3D flux of liquid convective precipitation |
| PFL_LSAN | GMIchem | kg m-2 s-1 | xyz | 3D flux of liquid nonconvective precipitation |
| PFL_LSAN | GMIchem | kg m-2 s-1 | xyz | 3D flux of liquid nonconvective precipitation |
| PHIS | FVdycore | m+2 s-2 | xy | surface geopotential height |
| PHIS | DynCore | m+2 sec-2 | xy | surface geopotential height |
| PHIS | ARIESg3 | m+2 sec-2 | xy | surface geopotential height |
| PHIS | DatmoDyn | m+2 sec-2 | xy | surface geopotential height |
| PHIS | Surface | m+2 s-2 | xy | surface geopotential height |
| PL | GMIchem | Pa | xyz | Mid-layer pressures |
| PLE | Physics | Pa | xyz | air pressure |
| PLE | ChemEnv | Pa | xyz | air pressure |
| PLE | GOCART | Pa | xyz | air pressure |
| PLE | GMIchem | Pa | xyz | air pressure |
| PLE | StratChem | Pa | xyz | air pressure |
| PLE | PChem | Pa | xyz | air pressure |
| PLE | Moist | Pa | xyz | air pressure |
| PLE | Turbulence | Pa | xyz | air pressure |
| PLE | Satsim | Pa | xyz | Edge pressures |
| PLE | Solar | Pa | xyz | air pressure |
| PLE | Irrad | Pa | xyz | air pressure |
| PLE | Gwd | Pa | xyz | air pressure |
| PLE | mkiau | Pa | xyz | air pressure |
| PLE | CARMA | Pa | xyz | Layer interface pressure |
| PLE | GMIchem | Pa | xyz | Layer interface pressure |
| PLEINST | Radiation | Pa | xyz | air pressure |
| PLS | Surface | kg m-2 s-1 | xy | liquid water large scale precipitation |
| PLS | Catch | kg m-2 s-1 | tile | liquid water large scale precipitation |
| PLS | Saltwater | kg m-2 s-1 | tile | liquid water large scale precipitation |
| PREF | Moist | Pa | z | reference air pressure |
| PREF | Turbulence | Pa | z | reference air pressure |
| PREF | Solar | Pa | z | reference air pressure |
| PREF | Irrad | Pa | z | reference air pressure |
| PREF | Gwd | Pa | z | reference air pressure |
| PS | GOCART | Pa | xy | surface pressure |
| PS | Surface | Pa | xy | surface pressure |
| PS | Lake | Pa | tile | surface pressure |
| PS | Landice | Pa | tile | surface pressure |
| PS | Catch | Pa | tile | surface pressure |
| PS | Saltwater | Pa | tile | surface pressure |
| PS | Ogcm | Pa | tile | surface air pressure |
| Q | ChemEnv | kg kg-1 | xyz | specific humidity |
| Q | GMIchem | 1 | xyz | specific humidity |
| Q | StratChem | kgkg | xyz | specific humidity |
| Q | PChem | kg kg-1 | xyz | specific humidity |
| Q | Gwd | kg kg-1 | xyz | specific humidity |
| Q | CARMA | kg kg-1 | xyz | Specific Humidity |
| Q | GMIchem | kg kg-1 | xyz | Specific Humidity |
| QA | Surface | kg kg-1 | xy | surface air specific humidity |
| QA | Lake | kg kg-1 | tile | surface air specific humidity |
| QA | Landice | kg kg-1 | tile | surface air specific humidity |
| QA | Catch | kg kg-1 | tile | surface air specific humidity |
| QA | Saltwater | kg kg-1 | tile | surface air specific humidity |
| QCTOT | GMIchem | 1 | xyz | mass fraction of total cloud water |
| QCTOT | StratChem | kgkg | xyz | mass fraction of total cloud water |
| QHATM | Lake | kg kg-1 | tile | effective surface specific humidity |
| QHATM | Landice | kg kg-1 | tile | effective surface specific humidity |
| QHATM | Catch | kg kg-1 | tile | effective surface specific humidity |
| QHATM | Saltwater | kg kg-1 | tile | effective surface specific humidity |
| QI | Solar | kg kg-1 | xyz | mass fraction of cloud ice in air |
| QI | Irrad | kg kg-1 | xyz | mass fraction of cloud ice in air |
| QI | Gwd | kg kg-1 | xyz | specific humidity of suspended ice |
| QICN | Turbulence | kg kg-1 | xyz | frozen condensate mixing ratio |
| QICN | Satsim | 1 | xyz | mass fraction of convective cloud ice water |
| QILS | Turbulence | kg kg-1 | xyz | frozen condensate mixing ratio |
| QILS | Satsim | 1 | xyz | mass fraction of large scale cloud ice water |
| QL | GMIchem | 1 | xyz | cloud liquid for radiation |
| QL | Solar | kg kg-1 | xyz | mass fraction of cloud liquid water in air |
| QL | Irrad | kg kg-1 | xyz | mass fraction of cloud liquid water in air |
| QL | GMIchem | kg kg-1 | xyz | Cloud liquid for radiation |
| QLCN | Turbulence | kg kg-1 | xyz | liquid condensate mixing ratio |
| QLCN | Satsim | 1 | xyz | mass fraction of convective cloud liquid water |
| QLLS | Turbulence | kg kg-1 | xyz | liquid condensate mixing ratio |
| QLLS | Satsim | 1 | xyz | mass fraction of large scale cloud liquid water |
| QR | Solar | kg kg-1 | xyz | mass fraction of rain water in air |
| QR | Irrad | kg kg-1 | xyz | mass fraction of rain water in air |
| QRTOT | Satsim | 1 | xyz | mass fraction of rain |
| QS | Solar | kg kg-1 | xyz | mass fraction of snow in air |
| QS | Irrad | kg kg-1 | xyz | mass fraction of snow in air |
| QSTOT | Satsim | 1 | xyz | mass fraction of snow |
| QV | Turbulence | kg kg-1 | xyz | specific humidity |
| QV | Satsim | 1 | xyz | specific humidity |
| QV | Solar | kg kg-1 | xyz | specific humidity |
| QV | Irrad | kg kg-1 | xyz | specific humidity |
| RADLW | Turbulence | K s-1 | xyz | air temperature tendency due to longwave |
| RADLWC | Turbulence | K s-1 | xyz | clearsky air temperature tendency lw |
| RH2 | GOCART | 1 | xyz | Rel Hum after moist |
| RH2 | GMIchem | 1 | xyz | relative humidity after moist |
| RH2 | GAAS | 1 | xyz | Relative Humidity |
| RH2 | CARMA | 1 | xyz | Relative Humidity after Moist |
| RH2 | GMIchem | 1 | xyz | Relative humidity after moist |
| RI | Satsim | m | xyz | ice phase cloud particle effective radius |
| RI | Solar | m | xyz | effective radius of cloud ice particles |
| RI | Irrad | m | xyz | effective radius of cloud ice particles |
| RL | Satsim | m | xyz | liquid cloud particle effective radius |
| RL | Solar | m | xyz | effective radius of cloud liquid water particles |
| RL | Irrad | m | xyz | effective radius of cloud liquid water particles |
| ROOTL | Catch | m | tile | vegetation root length |
| RR | Satsim | m | xyz | rain cloud particle effective radius |
| RR | Solar | m | xyz | effective radius of rain particles |
| RR | Irrad | m | xyz | effective radius of rain particles |
| RS | Satsim | m | xyz | snow particle effective radius |
| RS | Solar | m | xyz | effective radius of snow particles |
| RS | Irrad | m | xyz | effective radius of snow particles |
| S | Physics | m+2 s-2 | xyz | dry static energy |
| SALTFLUX | Ogcm | kg m-2 s-1 | tile | salt flux bw saltwater ocean |
| SGH | Gwd | m | xy | standard deviation of topography |
| SH | GOCART | W m-2 | xy | sensible heat flux from turbulence |
| SH | Surface | W m-2 | xy | sensible heat flux |
| SH | Lake | W m-2 | tile | upward sensible heat flux |
| SH | Landice | W m-2 | tile | upward sensible heat flux |
| SH | Catch | W m-2 | tile | upward sensible heat flux |
| SH | Saltwater | W m-2 | tile | upward sensible heat flux |
| SH | CARMA | W m-2 | xy | Sensible Heat Flux |
| SI | Ogcm | psu | tile | seaice skin salinity |
| SI | DataSeaIce | psu | xy | seaice skin salinity |
| SNO | Surface | kg m-2 s-1 | xy | snowfall |
| SNO | Lake | kg m-2 s-1 | tile | snowfall |
| SNO | Landice | kg m-2 s-1 | tile | snowfall |
| SNO | Catch | kg m-2 s-1 | tile | snowfall |
| SNO | Saltwater | kg m-2 s-1 | tile | snowfall |
| SO4 | GAAS | kgkg | xyz | SO4 Mixing Ratio |
| SPEED | Surface | m s-1 | xy | surface wind speed |
| SW | Ogcm | psu | tile | water skin salinity |
| SW | DataSea | psu | xy | water skin salinity |
| SWHEAT | DataSea | W m-2 | xyz | solar heating rate |
| SWNDSRF | GMIchem | W m-2 | xy | surface net downward shortwave flux |
| SWNDSRF | Solar | W m-2 | xy | surface net downward shortwave flux |
| SWNDSRF | GMIchem | W m-2 | xy | Surface net downward shortwave flux |
| T | Physics | K | xyz | air temperature |
| T | GOCART | K | xyz | air temperature |
| T | GMIchem | K | xyz | air temperature |
| T | StratChem | K | xyz | air temperature |
| T | Turbulence | K | xyz | air temperature |
| T | Satsim | K | xyz | air temperature |
| T | Solar | K | xyz | air temperature |
| T | Irrad | K | xyz | air temperature |
| T | Gwd | K | xyz | air temperature |
| T | mkiau | K | xyz | air temperature |
| T | CARMA | K | xyz | Air temperature |
| T | GMIchem | K | xyz | Air temperature |
| T2M | GMIchem | K | xy | 2-meter air temperature |
| T2M | GMIchem | K | xy | 2-meter air temperature |
| TA | GOCART | K | xy | surface temperature from surface |
| TA | GMIchem | K | xy | surface air temperature |
| TA | Surface | K | xy | surface air temperature |
| TA | Lake | K | tile | surface air temperature |
| TA | Landice | K | tile | surface air temperature |
| TA | Catch | K | tile | surface air temperature |
| TA | Saltwater | K | tile | surface air temperature |
| TA | GMIchem | K | xy | Surface air temperature |
| TAUAGE | Ogcm | s | tile | volume weighted mean ice age |
| TAUCLI | GMIchem | 1 | xyz | optical thickness for ice clouds |
| TAUCLW | GMIchem | 1 | xyz | optical thickness for liquid clouds |
| TAUCLW | GMIchem | 1 | xyz | Optical thickness for liquid clouds |
| TAUX | Surface | N m-2 | xy | eastward surface stress on air |
| TAUX | Saltwater | N m-2 | tile | eastward surface stress |
| TAUXI | Ogcm | N m-2 | tile | eastward stress on ice |
| TAUXW | Ogcm | N m-2 | tile | eastward stress on ocean |
| TAUY | Surface | N m-2 | xy | northward surface stress on air |
| TAUY | Saltwater | N m-2 | tile | northward surface stress |
| TAUYI | Ogcm | N m-2 | tile | northward stress on ice |
| TAUYW | Ogcm | N m-2 | tile | northward stress on ocean |
| TH | Physics | K | xyz | potential temperature |
| TH | ChemEnv | K | xyz | potential temperature |
| TH | Moist | K | xyz | potential temperature |
| TH | Turbulence | K | xyz | potential temperature |
| THATM | Lake | K | tile | effective surface skin temperature |
| THATM | Landice | K | tile | effective surface skin temperature |
| THATM | Catch | K | tile | effective surface skin temperature |
| THATM | Saltwater | K | tile | effective surface skin temperature |
| TI | Ogcm | K | tile | seaice skin temperature |
| TI | Ogcm | K | tile | seaice skin temperature |
| TI | DataSeaIce | K | xy | seaice skin temperature |
| TPREC | ChemEnv | kg m-2 s-1 | xy | total precipitation |
| TPREC | GMIchem | kg m-2 s-1 | xy | total precipitation |
| TPREC | GMIchem | kg m-2 s-1 | xy | Total precipitation |
| TR | Turbulence | X | xyz | diffused quantities |
| TRADV | FVdycore | unknown | xy | advected quantities |
| TRADV | DynCore | unknown | xy | advected quantities |
| TRADV | ARIESg3 | unknown | xy | advected quantities |
| TRADV | DatmoDyn | unknown | xy | advected quantities |
| TRANA | mkiau | X | xyz | analyzed quantities |
| TRG | Turbulence | X | xy | surface values of diffused quantity |
| TROPP | GOCART | Pa | xy | tropopause pressure based on blended estimate |
| TROPP | GMIchem | Pa | xy | tropopause pressure based on blended estimate |
| TROPP | StratChem | Pa | xy | tropopause pressure based on blended estimate |
| TROPP | PChem | Pa | xy | tropopause pressure |
| TS | Moist | K | xy | surface temperature |
| TS | Satsim | K | xy | skin temperature |
| TS | Irrad | K | xy | surface skin temperature |
| TSINST | Irrad | K | xy | surface skin temperature |
| TSOIL1 | GOCART | K | xy | soil temperatures layer 1 |
| TW | Ogcm | K | tile | water skin temperature |
| TW | DataSea | K | xy | water skin temperature |
| U | Physics | m s-1 | xyz | eastward wind |
| U | GOCART | m s-1 | xyz | eastward wind |
| U | Moist | m s-1 | xyz | eastward wind |
| U | Turbulence | m s-1 | xyz | eastward wind |
| U | Gwd | m s-1 | xyz | eastward wind |
| U | mkiau | m s-1 | xyz | eastward wind |
| U10M | GOCART | m s-1 | xy | 10-meter eastward wind |
| U10M | GMIchem | m s-1 | xy | 10-meter eastward wind |
| U10M | CARMA | m s-1 | xy | 10-m Eastward Wind |
| U10M | GMIchem | m s-1 | xy | 10-meter eastward wind |
| U10N | GOCART | m s-1 | xy | equivalent neutral 10-meter eastward wind |
| UA | Surface | m s-1 | xy | eastward wind bottom level |
| UHATM | Saltwater | m s-1 | tile | effective surface zonal velocity |
| UI | Saltwater | m s-1 | tile | zonal velocity of surface ice |
| UNKNOWN | GMIchem | state%chemReg%vunits(n) | xyz | state%chemReg%vtitle(n) |
| USTAR | GOCART | m s-1 | xy | surface velocity scale |
| USTAR | GMIchem | m s-1 | xy | surface velocity scale |
| USTAR | Turbulence | m s-1 | xy | surface velocity scale |
| USTAR | CARMA | m s-1 | xy | Surface Velocity Scale |
| USTAR | GMIchem | m s-1 | xy | Surface velocity scale |
| UU | Lake | m s-1 | tile | surface wind speed |
| UU | Landice | m s-1 | tile | surface wind speed |
| UU | Catch | m s-1 | tile | surface wind speed |
| UU | Saltwater | m s-1 | tile | surface wind speed |
| UW | Saltwater | m s-1 | tile | zonal velocity of surface water |
| UWINDLMTILE | Lake | m s-1 | tile | levellm uwind |
| UWINDLMTILE | Landice | m s-1 | tile | levellm uwind |
| UWINDLMTILE | Catch | m s-1 | tile | levellm uwind |
| UWINDLMTILE | Saltwater | m s-1 | tile | levellm uwind |
| V | Physics | m s-1 | xyz | northward wind |
| V | GOCART | m s-1 | xyz | northward wind |
| V | Moist | m s-1 | xyz | northward wind |
| V | Turbulence | m s-1 | xyz | northward wind |
| V | Gwd | m s-1 | xyz | northward wind |
| V | mkiau | m s-1 | xyz | northward wind |
| V10M | GOCART | m s-1 | xy | 10-meter northward wind |
| V10M | GMIchem | m s-1 | xy | 10-meter northward wind |
| V10M | CARMA | m s-1 | xy | 10-m Northward Wind |
| V10M | GMIchem | m s-1 | xy | 10-meter northward wind |
| V10N | GOCART | m s-1 | xy | equivalent neutral 10-meter northward wind |
| VA | Surface | m s-1 | xy | northward wind bottom level |
| VARFLT | Turbulence | m+2 | xy | variance of filtered topography |
| VHATM | Saltwater | m s-1 | tile | effective surface meridional velocity |
| VI | Saltwater | m s-1 | tile | meridional velocity of surface ice |
| VOLICE | Ogcm | m | tile | ice category volume per unit area of grid cell |
| VOLSNO | Ogcm | m | tile | sno category volume per unit area of grid cell |
| VW | Saltwater | m s-1 | tile | meridional velocity of surface water |
| VWINDLMTILE | Lake | m s-1 | tile | levellm vwind |
| VWINDLMTILE | Landice | m s-1 | tile | levellm vwind |
| VWINDLMTILE | Catch | m s-1 | tile | levellm vwind |
| VWINDLMTILE | Saltwater | m s-1 | tile | levellm vwind |
| WATERFLUX | Ogcm | kg m-2 s-1 | tile | water flux bw saltwater ocean |
| WET1 | GOCART | 1 | xy | surface soil wetness |
| WET1 | GMIchem | 1 | xy | surface soil wetness |
| WET1 | CARMA | 1 | xy | Surface Soil Wetness |
| WET1 | GMIchem | 1 | xy | Surface soil wetness |
| Z0H | GOCART | m | xy | surface roughness for heat |
| Z0H | GMIchem | m | xy | surface roughness for heat |
| Z0H | CARMA | m | xy | Roughness Length for Heat |
| Z0H | GMIchem | m | xy | Surface roughness for heat |
| Z2CH | Catch | m | tile | canopy height |
| ZL | GMIchem | m | xyz | Mid-layer heights |
| ZLE | Physics | m | xyz | geopotential height |
| ZLE | GOCART | m | xyz | geopotential height |
| ZLE | GMIchem | m | xyz | geopotential height |
| ZLE | Satsim | m | xyz | Edge heights |
| ZLE | CARMA | m | xyz | Layer interface geopot height |
| ZLE | GMIchem | m | xyz | Layer interface heights |
| ZPBL | GOCART | m | xy | Planetary boundary layer height |
| ZPBL | GMIchem | m | xy | Planetary boundary layer height |
| ZPBL | CARMA | m | xy | PBL Height |
| ZPBL | GMIchem | m | xy | Planetary boundary layer height |
| du001 | GAAS | kgkg | xyz | Dust Mixing Ratio Bin 1 |
| du002 | GAAS | kgkg | xyz | Dust Mixing Ratio Bin 2 |
| du003 | GAAS | kgkg | xyz | Dust Mixing Ratio Bin 3 |
| du004 | GAAS | kgkg | xyz | Dust Mixing Ratio Bin 4 |
| du005 | GAAS | kgkg | xyz | Dust Mixing Ratio Bin 5 |
| ss001 | GAAS | kgkg | xyz | Sea Salt Mixing Ratio Bin 1 |
| ss002 | GAAS | kgkg | xyz | Sea Salt Mixing Ratio Bin 2 |
| ss003 | GAAS | kgkg | xyz | Sea Salt Mixing Ratio Bin 3 |
| ss004 | GAAS | kgkg | xyz | Sea Salt Mixing Ratio Bin 4 |
| ss005 | GAAS | kgkg | xyz | Sea Salt Mixing Ratio Bin 5 |
List of GEOS-5 [IM] State variables
__FORCETOC__
Sorted 2380 states by SHORT name
| Name | Component | Units | Dim | Long name |
|---|---|---|---|---|
| ACCUM | Surface | kg m-2 s-1 | xy | net ice accumulation rate |
| ACCUM | Landice | kg m-2 s-1 | tile | net ice accumulation rate |
| ACCUM | Catch | kg m-2 s-1 | tile | net ice accumulation rate |
| ACRIL_AN | Moist | kg kg-1 s-1 | xyz | ice liq accretion of anvil precipitation |
| ACRIL_CN | Moist | kg kg-1 s-1 | xyz | ice liq accretion of convective precipitation |
| ACRIL_LS | Moist | kg kg-1 s-1 | xyz | ice liq accretion of nonanvil large scale precipitation |
| ACRLL_AN | Moist | kg kg-1 s-1 | xyz | liq liq accretion of anvil precipitation |
| ACRLL_CN | Moist | kg kg-1 s-1 | xyz | liq liq accretion of convective precipitation |
| ACRLL_LS | Moist | kg kg-1 s-1 | xyz | liq liq accretion of nonanvil large scale precipitation |
| ACR_TOT | Moist | kg kg-1 s-1 | xyz | total accretion of precipitation |
| AERO | GOCART | kg kg-1 | xyz | aerosol mass mixing ratios |
| AERO | GMIchem | kg kg-1 | xyz | aerosol mass mixing ratios |
| AERO_DP | GOCART | kg m-2 s-1 | xy | aerosol deposition |
| AERO_DP | PChem | kg m-2 s-1 | xy | aerosol deposition |
| AICE | Gcm | |||
| AICE | Ogcm | N m-2 | tile | northward stress at base of ice |
| AIRDENS | ChemEnv | kg m-3 | xyz | air density |
| AKQODT | Turbulence | 1 | xyz | matrix diagonal ak for moisture over dt |
| AKSODT | Turbulence | 1 | xyz | matrix diagonal ak for scalars over dt |
| AKVODT | Turbulence | 1 | xyz | matrix diagonal ak for winds over dt |
| ALBEDO | Radiation | W m-2 K-1 | xy | linearization of surface upwelling longwave flux |
| ALBEDO | Solar | 1 | xy | surface albedo |
| ALBISCCP | Satsim | 1 | xy | isccp cloud albedo |
| ALBNF | Surface | 1 | xy | surface albedo for nearinfraed diffuse |
| ALBNF | Lake | 1 | tile | surface albedo for near infrared diffuse |
| ALBNF | Landice | 1 | tile | surface albedo for near infrared diffuse |
| ALBNF | Catch | 1 | tile | surface albedo near infrared diffuse |
| ALBNF | Saltwater | 1 | tile | surface albedo for near infrared diffuse |
| ALBNF | Solar | 1 | xy | surface albedo for near infrared diffuse |
| ALBNR | Surface | 1 | xy | surface albedo for nearinfrared beam |
| ALBNR | Lake | 1 | tile | surface albedo for near infrared beam |
| ALBNR | Landice | 1 | tile | surface albedo for near infrared beam |
| ALBNR | Catch | 1 | tile | surface albedo near infrared beam |
| ALBNR | Saltwater | 1 | tile | surface albedo for near infrared beam |
| ALBNR | Solar | 1 | xy | surface albedo for near infrared beam |
| ALBVF | Surface | 1 | xy | surface albedo for visible diffuse |
| ALBVF | Lake | 1 | tile | surface albedo for visible diffuse |
| ALBVF | Landice | 1 | tile | surface albedo for visible diffuse |
| ALBVF | Catch | 1 | tile | surface albedo visible diffuse |
| ALBVF | Saltwater | 1 | tile | surface albedo for visible diffuse |
| ALBVF | Solar | 1 | xy | surface albedo for visible diffuse |
| ALBVR | Surface | 1 | xy | surface albedo for visible beam |
| ALBVR | Lake | 1 | tile | surface albedo for visible beam |
| ALBVR | Landice | 1 | tile | surface albedo for visible beam |
| ALBVR | Catch | 1 | tile | surface albedo visible beam |
| ALBVR | Saltwater | 1 | tile | surface albedo for visible beam |
| ALBVR | Solar | 1 | xy | surface albedo for visible beam |
| ALH | Turbulence | m | xyz | Blackadar length scale for scalars |
| ALPH1 | Moist | 1 | xyz | pdf spread for condensation over qsat term1 |
| ALPH2 | Moist | 1 | xyz | pdf spread for condensation over qsat term2 |
| ALPHT | Moist | 1 | xyz | pdf spread for condensation over qsat total |
| ALW | Radiation | W m-2 | xy | linearization of surface upwelling longwave flux |
| AN_ARF | Moist | 1 | xy | areal fraction of anvil showers |
| AN_PRCP | Moist | kg m-2 s-1 | xy | anvil precipitation |
| AODANA | GAAS | 1 | xy | Aerosol Optical Depth Analysis |
| AODINC | GAAS | 1 | xy | Aerosol Optical Depth Analysis Increment |
| AR1 | Catch | 1 | tile | areal fraction saturated zone |
| AR2 | Catch | 1 | tile | areal fraction transpiration zone |
| AREA | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| AREA | FVdycore | m+2 | xy | agrid cell area |
| AREA | DynCore | m+2 | xy | agrid cell area |
| AREA | ARIESg3 | m+2 | xy | agrid cell area |
| AREA | DatmoDyn | m+2 | xy | agrid cell area |
| ASNOW | Surface | 1 | xy | fractional area of land snowcover |
| ASNOW | Catch | 1 | tile | fractional area of land snowcover |
| AUT | Moist | kg kg-1 s-1 | xyz | autoconv sink of cloud liq |
| AUTZ | Moist | kg m-2 s-1 | xy | autoconversion loss of cloud water |
| AVETSNOW | Surface | K | xy | averaged snow temperature |
| AVETSNOW | Catch | K | tile | averaged snow temperature |
| BASEFLOW | Surface | kg m-2 s-1 | xy | baseflow flux |
| BASEFLOW | Catch | kg m-2 s-1 | tile | baseflow flux |
| BC | PChem | kg kg-1 | xyz | black carbon aerosol mixing ratio |
| BCANA | GAAS | kgkg | xyz | Black Carbon Mixing Ratio Analysis |
| BCANGSTR | BC | 1 | xy | Black Carbon Angstrom parameter [470-870 nm] |
| BCCMASS | BC | kg m-2 | xy | Black Carbon Column Mass Density |
| BCCONC | BC | kg m-3 | xyz | Black Carbon Mass Concentration |
| BCDP001 | BC | kg m-2 s-1 | xy | Black Carbon Dry Deposition Bin 001 |
| BCDP002 | BC | kg m-2 s-1 | xy | Black Carbon Dry Deposition Bin 002 |
| BCEM001 | BC | kg m-2 s-1 | xy | Black Carbon Emission Bin 001 |
| BCEM002 | BC | kg m-2 s-1 | xy | Black Carbon Emission Bin 002 |
| BCEMAN | BC | kg m-2 s-1 | xy | Black Carbon Anthropogenic Emissions |
| BCEMBB | BC | kg m-2 s-1 | xy | Black Carbon Biomass Burning Emissions |
| BCEMBF | BC | kg m-2 s-1 | xy | Black Carbon Biofuel Emissions |
| BCEXTCOEF | BC | m-1 | xyz | Black Carbon Extinction Coefficient [550 nm] |
| BCEXTTAU | BC | 1 | xy | Black Carbon Extinction AOT [550 nm] |
| BCFLUXU | BC | kg m-1 s-1 | xy | Black Carbon column u-wind mass flux |
| BCFLUXV | BC | kg m-1 s-1 | xy | Black Carbon column v-wind mass flux |
| BCHYGRO | GMIchem | 1 | xyz | Hygroscopic growth of black carbon |
| BCHYPHIL | BC | kg m-2 s-1 | xy | Black Carbon Hydrophobic to Hydrophilic |
| BCINC | GAAS | kgkg | xyz | Black Carbon Mixing Ratio Analysis Increments |
| BCMASS | BC | kgkg | xyz | Black Carbon Mass Mixing Ratio |
| BCOD | GMIchem | 1 | xyz | Black carbon optical depth (400 nm) |
| BCSA | GMIchem | cm2cm3 | xyz | Black carbon surface area |
| BCSCACOEF | BC | m-1 | xyz | Black Carbon Scattering Coefficient [550 nm] |
| BCSCATAU | BC | 1 | xy | Black Carbon Scattering AOT [550 nm] |
| BCSMASS | BC | kg m-3 | xy | Black Carbon Surface Mass Concentration |
| BCWT001 | BC | kg m-2 s-1 | xy | Black Carbon Wet Deposition Bin 001 |
| BCWT002 | BC | kg m-2 s-1 | xy | Black Carbon Wet Deposition Bin 002 |
| BKGERR | Gwd | W m-2 | xy | vertically integrated kinetic energy residual for BKG energy conservation |
| BLW | Radiation | W m-2 K-1 | xy | linearization of surface upwelling longwave flux |
| BSTAR | Surface | m s-2 | xy | surface bouyancy scale |
| BYNCY | Moist | m s-2 | xyz | buoyancy of surface parcel |
| CAPAC | Surface | kg m-2 | xy | interception reservoir capac |
| CAPE | Moist | J m-2 | xy | cape for surface parcel |
| CARMAASHCMASS | CARMA | kg m-2 | xy | Ash column burden |
| CARMAASHDP | CARMA | kg m-2 s-1 | xy | Ash deposition flux |
| CARMAASHEM | CARMA | kg m-2 s-1 | xy | Ash emission flux |
| CARMAASHEXTTAU | CARMA | 1 | xy | Ash 550-nm extinction AOT |
| CARMAASHSCATAU | CARMA | 1 | xy | Ash 550-nm scattering AOT |
| CARMAASHSD | CARMA | kg m-2 s-1 | xy | Ash sedimentation flux |
| CARMAASHSMASS | CARMA | kg m-3 | xy | Ash surface mass concentration |
| CARMAASHSV | CARMA | kg m-2 s-1 | xy | Ash scavenging flux |
| CARMAASHWT | CARMA | kg m-2 s-1 | xy | Ash wet-deposition flux |
| CARMADUCMASS | CARMA | kg m-2 | xy | Dust column burden |
| CARMADUDP | CARMA | kg m-2 s-1 | xy | Dust deposition flux |
| CARMADUEM | CARMA | kg m-2 s-1 | xy | Dust emission flux |
| CARMADUEXTTAU | CARMA | 1 | xy | Dust 550-nm extinction AOT |
| CARMADUSCATAU | CARMA | 1 | xy | Dust 550-nm scattering AOT |
| CARMADUSD | CARMA | kg m-2 s-1 | xy | Dust sedimentation flux |
| CARMADUSMASS | CARMA | kg m-3 | xy | Dust surface mass concentration |
| CARMADUSV | CARMA | kg m-2 s-1 | xy | Dust scavenging flux |
| CARMADUWT | CARMA | kg m-2 s-1 | xy | Dust wet-deposition flux |
| CARMASMCMASS | CARMA | kg m-2 | xy | Smoke column burden |
| CARMASMDP | CARMA | kg m-2 s-1 | xy | Smoke deposition flux |
| CARMASMEM | CARMA | kg m-2 s-1 | xy | Smoke emission flux |
| CARMASMEXTTAU | CARMA | 1 | xy | Smoke 550-nm extinction AOT |
| CARMASMSCATAU | CARMA | 1 | xy | Smoke 550-nm scattering AOT |
| CARMASMSD | CARMA | kg m-2 s-1 | xy | Smoke sedimentation flux |
| CARMASMSMASS | CARMA | kg m-3 | xy | Smoke surface mass concentration |
| CARMASMSV | CARMA | kg m-2 s-1 | xy | Smoke scavenging flux |
| CARMASMWT | CARMA | kg m-2 s-1 | xy | Smoke wet-deposition flux |
| CARMASSCMASS | CARMA | kg m-2 | xy | Seasalt column burden |
| CARMASSDP | CARMA | kg m-2 s-1 | xy | Seasalt deposition flux |
| CARMASSEM | CARMA | kg m-2 s-1 | xy | Seasalt emission flux |
| CARMASSEXTTAU | CARMA | 1 | xy | Seasalt 550-nm extinction AOT |
| CARMASSSCATAU | CARMA | 1 | xy | Seasalt 550-nm scattering AOT |
| CARMASSSD | CARMA | kg m-2 s-1 | xy | Seasalt sedimentation flux |
| CARMASSSMASS | CARMA | kg m-3 | xy | Seasalt surface mass concentration |
| CARMASSSV | CARMA | kg m-2 s-1 | xy | Seasalt scavenging flux |
| CARMASSWT | CARMA | kg m-2 s-1 | xy | Seasalt wet-deposition flux |
| CCL4FLX | StratChem | kgs | xy | derived CCl4 surface flux |
| CCWP | Moist | kg m-2 | xy | grid mean conv cond water path diagnostic |
| CDCR2 | Surface | kg m-2 | xy | max water content |
| CFADLIDARSR532_01 | Satsim | 1 | xyz | calipso scattering ratio cfad 01 |
| CFADLIDARSR532_02 | Satsim | 1 | xyz | calipso scattering ratio cfad 02 |
| CFADLIDARSR532_03 | Satsim | 1 | xyz | calipso scattering ratio cfad 03 |
| CFADLIDARSR532_04 | Satsim | 1 | xyz | calipso scattering ratio cfad 04 |
| CFADLIDARSR532_05 | Satsim | 1 | xyz | calipso scattering ratio cfad 05 |
| CFADLIDARSR532_06 | Satsim | 1 | xyz | calipso scattering ratio cfad 06 |
| CFADLIDARSR532_07 | Satsim | 1 | xyz | calipso scattering ratio cfad 07 |
| CFADLIDARSR532_08 | Satsim | 1 | xyz | calipso scattering ratio cfad 08 |
| CFADLIDARSR532_09 | Satsim | 1 | xyz | calipso scattering ratio cfad 09 |
| CFADLIDARSR532_10 | Satsim | 1 | xyz | calipso scattering ratio cfad 10 |
| CFADLIDARSR532_11 | Satsim | 1 | xyz | calipso scattering ratio cfad 11 |
| CFADLIDARSR532_12 | Satsim | 1 | xyz | calipso scattering ratio cfad 12 |
| CFADLIDARSR532_13 | Satsim | 1 | xyz | calipso scattering ratio cfad 13 |
| CFADLIDARSR532_14 | Satsim | 1 | xyz | calipso scattering ratio cfad 14 |
| CFADLIDARSR532_15 | Satsim | 1 | xyz | calipso scattering ratio cfad 15 |
| CFC11_LOSS | PChem | mol mol-1 s-1 | xyz | tendency of CFC11 volume mixing ratio due to loss |
| CFC11_PROD | PChem | mol mol-1 s-1 | xyz | tendency of CFC11 volume mixing ratio due to production |
| CFC12EM | CFC | kg m-2 s-1 | xy | CFC-12 Emission |
| CFC12S | CFC | mol mol-1 | xyz | Stratospheric CFC-12 (CCl2F2) |
| CFC12SCL | CFC | kg m-2 | xy | Stratospheric CFC-12 Column |
| CFC12SLS | CFC | kg m-2 s-1 | xyz | Stratospheric CFC-12 Loss |
| CFC12T | CFC | mol mol-1 | xyz | Tropospheric CFC-12 (CCl2F2) |
| CFC12TCL | CFC | kg m-2 | xy | Tropospheric CFC-12 Column |
| CFC12TLS | CFC | kg m-2 s-1 | xyz | Tropospheric CFC-12 Loss |
| CFC12_LOSS | PChem | mol mol-1 s-1 | xyz | tendency of CFC12 volume mixing ratio due to loss |
| CFC12_PROD | PChem | mol mol-1 s-1 | xyz | tendency of CFC12 volume mixing ratio due to production |
| CFPDF | Moist | 1 | xyz | cloud fraction after PDF |
| CFPDFX | Moist | 1 | xyz | cloud fraction internal in PDF scheme |
| CH3BRFLX | StratChem | kgs | xy | derived CH3Br surface flux |
| CH3CLFLX | StratChem | kgs | xy | derived CH3Cl surface flux |
| CH4CL | CH4 | kg m-2 | xy | CH4 Column Burden ENSEMBLE |
| CH4CLanimls | CH4 | kg m-2 | xy | CH4 Column Burden animals |
| CH4CLbf | CH4 | kg m-2 | xy | CH4 Column Burden biofuel |
| CH4CLbogs | CH4 | kg m-2 | xy | CH4 Column Burden bogs |
| CH4CLburn | CH4 | kg m-2 | xy | CH4 Column Burden biomass burning |
| CH4CLcoal | CH4 | kg m-2 | xy | CH4 Column Burden coal |
| CH4CLgasvnt | CH4 | kg m-2 | xy | CH4 Column Burden gas venting |
| CH4CLhydz | CH4 | kg m-2 | xy | CH4 Column Burden ocean HYDZ |
| CH4CLleak | CH4 | kg m-2 | xy | CH4 Column Burden leakage |
| CH4CLmsw | CH4 | kg m-2 | xy | CH4 Column Burden municipal sewers |
| CH4CLricec | CH4 | kg m-2 | xy | CH4 Column Burden rice cultivation |
| CH4CLsoilab | CH4 | kg m-2 | xy | CH4 Column Burden soil absorption |
| CH4CLswamps | CH4 | kg m-2 | xy | CH4 Column Burden swamps |
| CH4CLtot | CH4 | kg m-2 | xy | CH4 Column Burden total |
| CH4CLtrmite | CH4 | kg m-2 | xy | CH4 Column Burden termites |
| CH4CLtundra | CH4 | kg m-2 | xy | CH4 Column Burden tundra |
| CH4EM | CH4 | kg m-2 s-1 | xy | CH4 Emission ENSEMBLE |
| CH4EManimls | CH4 | kg m-2 s-1 | xy | CH4 Emission animals |
| CH4EMbf | CH4 | kg m-2 s-1 | xy | CH4 Emission biofuel |
| CH4EMbogs | CH4 | kg m-2 s-1 | xy | CH4 Emission bogs |
| CH4EMburn | CH4 | kg m-2 s-1 | xy | CH4 Emission biomass burning |
| CH4EMcoal | CH4 | kg m-2 s-1 | xy | CH4 Emission coal |
| CH4EMgasvnt | CH4 | kg m-2 s-1 | xy | CH4 Emission gas venting |
| CH4EMhydz | CH4 | kg m-2 s-1 | xy | CH4 Emission ocean HYDZ |
| CH4EMleak | CH4 | kg m-2 s-1 | xy | CH4 Emission leakage |
| CH4EMmsw | CH4 | kg m-2 s-1 | xy | CH4 Emission municipal sewers |
| CH4EMricec | CH4 | kg m-2 s-1 | xy | CH4 Emission rice cultivation |
| CH4EMsoilab | CH4 | kg m-2 s-1 | xy | CH4 Emission soil absorption |
| CH4EMswamps | CH4 | kg m-2 s-1 | xy | CH4 Emission swamps |
| CH4EMtot | CH4 | kg m-2 s-1 | xy | CH4 Emission total |
| CH4EMtrmite | CH4 | kg m-2 s-1 | xy | CH4 Emission termites |
| CH4EMtundra | CH4 | kg m-2 s-1 | xy | CH4 Emission tundra |
| CH4FLX | StratChem | kgs | xy | derived CH4 surface flux |
| CH4LS | CH4 | kg m-2 s-1 | xy | CH4 Chemical Loss ENSEMBLE |
| CH4LSanimls | CH4 | kg m-2 s-1 | xy | CH4 Chemical Loss animals |
| CH4LSbf | CH4 | kg m-2 s-1 | xy | CH4 Chemical Loss biofuel |
| CH4LSbogs | CH4 | kg m-2 s-1 | xy | CH4 Chemical Loss bogs |
| CH4LSburn | CH4 | kg m-2 s-1 | xy | CH4 Chemical Loss biomass burning |
| CH4LScoal | CH4 | kg m-2 s-1 | xy | CH4 Chemical Loss coal |
| CH4LSgasvnt | CH4 | kg m-2 s-1 | xy | CH4 Chemical Loss gas venting |
| CH4LShydz | CH4 | kg m-2 s-1 | xy | CH4 Chemical Loss ocean HYDZ |
| CH4LSleak | CH4 | kg m-2 s-1 | xy | CH4 Chemical Loss leakage |
| CH4LSmsw | CH4 | kg m-2 s-1 | xy | CH4 Chemical Loss municipal sewers |
| CH4LSricec | CH4 | kg m-2 s-1 | xy | CH4 Chemical Loss rice cultivation |
| CH4LSsoilab | CH4 | kg m-2 s-1 | xy | CH4 Chemical Loss soil absorption |
| CH4LSswamps | CH4 | kg m-2 s-1 | xy | CH4 Chemical Loss swamps |
| CH4LStot | CH4 | kg m-2 s-1 | xy | CH4 Chemical Loss total |
| CH4LStrmite | CH4 | kg m-2 s-1 | xy | CH4 Chemical Loss termites |
| CH4LStundra | CH4 | kg m-2 s-1 | xy | CH4 Chemical Loss tundra |
| CH4PD | CH4 | kg m-2 s-1 | xy | CH4 Chemical Production ENSEMBLE |
| CH4PDanimls | CH4 | kg m-2 s-1 | xy | CH4 Chemical Production animals |
| CH4PDbf | CH4 | kg m-2 s-1 | xy | CH4 Chemical Production biofuel |
| CH4PDbogs | CH4 | kg m-2 s-1 | xy | CH4 Chemical Production bogs |
| CH4PDburn | CH4 | kg m-2 s-1 | xy | CH4 Chemical Production biomass burning |
| CH4PDcoal | CH4 | kg m-2 s-1 | xy | CH4 Chemical Production coal |
| CH4PDgasvnt | CH4 | kg m-2 s-1 | xy | CH4 Chemical Production gas venting |
| CH4PDhydz | CH4 | kg m-2 s-1 | xy | CH4 Chemical Production ocean HYDZ |
| CH4PDleak | CH4 | kg m-2 s-1 | xy | CH4 Chemical Production leakage |
| CH4PDmsw | CH4 | kg m-2 s-1 | xy | CH4 Chemical Production municipal sewers |
| CH4PDricec | CH4 | kg m-2 s-1 | xy | CH4 Chemical Production rice cultivation |
| CH4PDsoilab | CH4 | kg m-2 s-1 | xy | CH4 Chemical Production soil absorption |
| CH4PDswamps | CH4 | kg m-2 s-1 | xy | CH4 Chemical Production swamps |
| CH4PDtot | CH4 | kg m-2 s-1 | xy | CH4 Chemical Production total |
| CH4PDtrmite | CH4 | kg m-2 s-1 | xy | CH4 Chemical Production termites |
| CH4PDtundra | CH4 | kg m-2 s-1 | xy | CH4 Chemical Production tundra |
| CH4SC | CH4 | ppbv | xy | CH4 Surface Concentration ENSEMBLE |
| CH4SCanimls | CH4 | ppbv | xy | CH4 Surface Concentration animals |
| CH4SCbf | CH4 | ppbv | xy | CH4 Surface Concentration biofuel |
| CH4SCbogs | CH4 | ppbv | xy | CH4 Surface Concentration bogs |
| CH4SCburn | CH4 | ppbv | xy | CH4 Surface Concentration biomass burning |
| CH4SCcoal | CH4 | ppbv | xy | CH4 Surface Concentration coal |
| CH4SCgasvnt | CH4 | ppbv | xy | CH4 Surface Concentration gas venting |
| CH4SChydz | CH4 | ppbv | xy | CH4 Surface Concentration ocean HYDZ |
| CH4SCleak | CH4 | ppbv | xy | CH4 Surface Concentration leakage |
| CH4SCmsw | CH4 | ppbv | xy | CH4 Surface Concentration municipal sewers |
| CH4SCricec | CH4 | ppbv | xy | CH4 Surface Concentration rice cultivation |
| CH4SCsoilab | CH4 | ppbv | xy | CH4 Surface Concentration soil absorption |
| CH4SCswamps | CH4 | ppbv | xy | CH4 Surface Concentration swamps |
| CH4SCtot | CH4 | ppbv | xy | CH4 Surface Concentration total |
| CH4SCtrmite | CH4 | ppbv | xy | CH4 Surface Concentration termites |
| CH4SCtundra | CH4 | ppbv | xy | CH4 Surface Concentration tundra |
| CH4_LOSS | PChem | mol mol-1 s-1 | xyz | tendency of methane volume mixing ratio due to loss |
| CH4_PROD | PChem | mol mol-1 s-1 | xyz | tendency of methane volume mixing ratio due to production |
| CHEM_TRACERS | Chem | X | chemistry friendly tracers | |
| CHEM_TRACERS | Chem | X | chemistry friendly tracers | |
| CHEM_TRACERS | Chem | X | chemistry friendly tracers | |
| CHEM_TRACERS | Chem | X | chemistry friendly tracers | |
| CHEM_TRACERS | Chem | X | chemistry friendly tracers | |
| CHIS | Turbulence | 1 | xy | optimal mixture fraction for BRV |
| CHT | Lake | kg m-2 s-1 | tile | surface heat exchange coefficient |
| CHT | Landice | kg m-2 s-1 | tile | surface heat exchange coefficient |
| CHT | Catch | kg m-2 s-1 | tile | surface heat exchange coefficient |
| CHT | Saltwater | kg m-2 s-1 | tile | surface heat exchange coefficient |
| CICE_2D_MASK | Gcm | |||
| CICE_2D_MASK | Ogcm | N m-2 | tile | northward stress at base of ice |
| CKQODT | Turbulence | 1 | xyz | matrix diagonal ck for moisture over dt |
| CKSODT | Turbulence | 1 | xyz | matrix diagonal ck for scalars over dt |
| CKVODT | Turbulence | 1 | xyz | matrix diagonal ck for winds over dt |
| CLCALIPSO | Satsim | 1 | xyz | calipso total cloud fraction |
| CLCALIPSO2 | Satsim | 1 | xyz | calipsonocloudsat cloud fraction |
| CLCN | Moist | 1 | xyz | convective cloud area fraction |
| CLCNX0 | Moist | 1 | xyz | convective cloud area fraction |
| CLDHI | Solar | 1 | xy | cloud area fraction for high clouds |
| CLDLO | Solar | 1 | xy | cloud area fraction for low clouds |
| CLDMD | Solar | 1 | xy | cloud area fraction for middle clouds |
| CLDNCCN | Moist | m-3 | xyz | number concentration of cloud particles |
| CLDPRS | Solar | Pa | xy | cloud top pressure |
| CLDPRS | Irrad | Pa | xy | cloud top pressure |
| CLDRF | Turbulence | W m-2 | xy | cloud top radiative forcing |
| CLDSTD | Gwd | m | xy | gravity wave drag standard deviation due to clouds |
| CLDTMP | Solar | K | xy | cloud top temperature |
| CLDTMP | Irrad | K | xy | cloud top temperature |
| CLDTT | Radiation | W m-2 K-1 | xy | linearization of surface upwelling longwave flux |
| CLDTT | Solar | 1 | xy | total cloud area fraction |
| CLHCALIPSO | Satsim | 1 | xy | calipso high level cloud fraction |
| CLLCALIPSO | Satsim | 1 | xy | calipso low level cloud fraction |
| CLLS | Moist | 1 | xyz | large scale cloud area fraction |
| CLLSX0 | Moist | 1 | xyz | large scale cloud area fraction |
| CLMCALIPSO | Satsim | 1 | xy | calipso mid level cloud fraction |
| CLOUDSATCFAD01 | Satsim | 1 | xyz | cloudsat radar reflectivity cfad |
| CLOUDSATCFAD02 | Satsim | 1 | xyz | cloudsat radar reflectivity cfad |
| CLOUDSATCFAD03 | Satsim | 1 | xyz | cloudsat radar reflectivity cfad |
| CLOUDSATCFAD04 | Satsim | 1 | xyz | cloudsat radar reflectivity cfad |
| CLOUDSATCFAD05 | Satsim | 1 | xyz | cloudsat radar reflectivity cfad |
| CLOUDSATCFAD06 | Satsim | 1 | xyz | cloudsat radar reflectivity cfad |
| CLOUDSATCFAD07 | Satsim | 1 | xyz | cloudsat radar reflectivity cfad |
| CLOUDSATCFAD08 | Satsim | 1 | xyz | cloudsat radar reflectivity cfad |
| CLOUDSATCFAD09 | Satsim | 1 | xyz | cloudsat radar reflectivity cfad |
| CLOUDSATCFAD10 | Satsim | 1 | xyz | cloudsat radar reflectivity cfad |
| CLOUDSATCFAD11 | Satsim | 1 | xyz | cloudsat radar reflectivity cfad |
| CLOUDSATCFAD12 | Satsim | 1 | xyz | cloudsat radar reflectivity cfad |
| CLOUDSATCFAD13 | Satsim | 1 | xyz | cloudsat radar reflectivity cfad |
| CLOUDSATCFAD14 | Satsim | 1 | xyz | cloudsat radar reflectivity cfad |
| CLOUDSATCFAD15 | Satsim | 1 | xyz | cloudsat radar reflectivity cfad |
| CLTCALIPSO | Satsim | 1 | xy | calipso total cloud fraction |
| CMT | Lake | kg m-2 s-1 | tile | surface momentum exchange coefficient |
| CMT | Landice | kg m-2 s-1 | tile | surface momentum exchange coefficient |
| CMT | Catch | kg m-2 s-1 | tile | surface momentum exchange coefficient |
| CMT | Saltwater | kg m-2 s-1 | tile | surface momentum exchange coefficient |
| CNT | Lake | 1 | tile | neutral drag coefficient |
| CNT | Landice | 1 | tile | neutral drag coefficient |
| CNT | Catch | 1 | tile | neutral drag coefficient |
| CNT | Saltwater | 1 | tile | neutral drag coefficient |
| CNV | FVdycore | W m-2 | xy | generation of atmosphere kinetic energy content |
| CNV | DynCore | W m-2 | xy | generation of atmosphere kinetic energy content |
| CNV | ARIESg3 | W m-2 | xy | generation of atmosphere kinetic energy content |
| CNVIZ | Moist | kg m-2 s-1 | xy | convective source of cloud ice |
| CNVLZ | Moist | kg m-2 s-1 | xy | convective source of cloud water |
| CNVRNZ | Moist | kg m-2 s-1 | xy | convective production of rain water |
| CNV_BASEP | Moist | Pa | xy | pressure at convective cloud base |
| CNV_CVW | Moist | hPa s-1 | xyz | updraft vertical velocity |
| CNV_DQLDT | Moist | kg m-2 s-1 | xyz | convective condensate source |
| CNV_FREQ | Moist | fraction | xy | convective frequency |
| CNV_MF0 | Moist | kg m-2 s-1 | xyz | cloud base mass flux |
| CNV_MFC | Moist | kg m-2 s-1 | xyz | cumulative mass flux |
| CNV_MFD | Moist | kg m-2 s-1 | xyz | detraining mass flux |
| CNV_QC | Moist | kg kg-1 | xyz | grid mean convective condensate |
| CNV_TOPP | Moist | Pa | xy | pressure at convective cloud top |
| CNV_UPDF | Moist | 1 | xyz | updraft areal fraction |
| CN_ARF | Moist | 1 | xy | areal fraction of convective showers |
| CN_PRCP | Moist | kg m-2 s-1 | xy | convective precipitation |
| CO2 | CO2 | molmol | xyz | Carbon Dioxide |
| CO2AFRIC | CO2 | molmol | xyz | African Carbon Dioxide |
| CO2CL001 | CO2 | kg m-2 | xy | CO2 Column Load Bin 001 |
| CO2CL002 | CO2 | kg m-2 | xy | CO2 Column Load Bin 002 |
| CO2CL003 | CO2 | kg m-2 | xy | CO2 Column Load Bin 003 |
| CO2CL004 | CO2 | kg m-2 | xy | CO2 Column Load Bin 004 |
| CO2EM001 | CO2 | kg m-2 s-1 | xy | CO2 Emission Bin 001 |
| CO2EM002 | CO2 | kg m-2 s-1 | xy | CO2 Emission Bin 002 |
| CO2EM003 | CO2 | kg m-2 s-1 | xy | CO2 Emission Bin 003 |
| CO2EM004 | CO2 | kg m-2 s-1 | xy | CO2 Emission Bin 004 |
| CO2NAMER | CO2 | molmol | xyz | North American Carbon Dioxide |
| CO2SAMER | CO2 | molmol | xyz | South American Carbon Dioxide |
| CO2SC001 | CO2 | 1e-6 | xy | CO2 Surface Concentration Bin 001 |
| CO2SC002 | CO2 | 1e-6 | xy | CO2 Surface Concentration Bin 002 |
| CO2SC003 | CO2 | 1e-6 | xy | CO2 Surface Concentration Bin 003 |
| CO2SC004 | CO2 | 1e-6 | xy | CO2 Surface Concentration Bin 004 |
| COCL | CO | kg m-2 | xy | CO Column Burden ENSEMBLE |
| COCLbbae | CO | kg m-2 | xy | CO Column Burden (Asia and Europe Biomass Burning) |
| COCLbbaf | CO | kg m-2 | xy | CO Column Burden (Africa Biomass Burning) |
| COCLbbbo | CO | kg m-2 | xy | CO Column Burden (Boreal Biomass Burning) |
| COCLbbgl | CO | kg m-2 | xy | CO Column Burden (Global Biomass Burning) |
| COCLbbla | CO | kg m-2 | xy | CO Column Burden (Central and South America Biomass Burning) |
| COCLbbna | CO | kg m-2 | xy | CO Column Burden (North America Biomass Burning) |
| COCLbbnb | CO | kg m-2 | xy | CO Column Burden (Non-Boreal Biomass Burning) |
| COCLffas | CO | kg m-2 | xy | CO Column Burden (Anthopogenic Emissions Southern Asia) |
| COCLffeu | CO | kg m-2 | xy | CO Column Burden (Anthopogenic Emissions Europe) |
| COCLffna | CO | kg m-2 | xy | CO Column Burden (Anthopogenic Emissions North America) |
| COCLffru | CO | kg m-2 | xy | CO Column Burden (Anthopogenic Emissions Northern Asia) |
| COCLnbas | CO | kg m-2 | xy | CO Column Burden (Asia Non-Biomass Burning) |
| COCLnbeu | CO | kg m-2 | xy | CO Column Burden (European Non-Biomass Burning) |
| COCLnbgl | CO | kg m-2 | xy | CO Column Burden (Global Non-Biomass Burning) |
| COCLnbna | CO | kg m-2 | xy | CO Column Burden (North American Non-Biomass Burning) |
| COEM | CO | kg m-2 s-1 | xy | CO Emission ENSEMBLE |
| COEMbbae | CO | kg m-2 s-1 | xy | CO Emission (Asia and Europe Biomass Burning) |
| COEMbbaf | CO | kg m-2 s-1 | xy | CO Emission (Africa Biomass Burning) |
| COEMbbbo | CO | kg m-2 s-1 | xy | CO Emission (Boreal Biomass Burning) |
| COEMbbgl | CO | kg m-2 s-1 | xy | CO Emission (Global Biomass Burning) |
| COEMbbla | CO | kg m-2 s-1 | xy | CO Emission (Central and South America Biomass Burning) |
| COEMbbna | CO | kg m-2 s-1 | xy | CO Emission (North America Biomass Burning) |
| COEMbbnb | CO | kg m-2 s-1 | xy | CO Emission (Non-Boreal Biomass Burning) |
| COEMffas | CO | kg m-2 s-1 | xy | CO Emission (Anthopogenic Emissions Southern Asia) |
| COEMffeu | CO | kg m-2 s-1 | xy | CO Emission (Anthopogenic Emissions Europe) |
| COEMffna | CO | kg m-2 s-1 | xy | CO Emission (Anthopogenic Emissions North America) |
| COEMffru | CO | kg m-2 s-1 | xy | CO Emission (Anthopogenic Emissions Northern Asia) |
| COEMnbas | CO | kg m-2 s-1 | xy | CO Emission (Asia Non-Biomass Burning) |
| COEMnbeu | CO | kg m-2 s-1 | xy | CO Emission (European Non-Biomass Burning) |
| COEMnbgl | CO | kg m-2 s-1 | xy | CO Emission (Global Non-Biomass Burning) |
| COEMnbna | CO | kg m-2 s-1 | xy | CO Emission (North American Non-Biomass Burning) |
| COLLIZ | Moist | kg m-2 s-1 | xy | accretion loss of cloud water to snow |
| COLLLZ | Moist | kg m-2 s-1 | xy | accretion loss of cloud water to rain |
| COLS | CO | kg m-2 s-1 | xy | CO Chemical Loss ENSEMBLE |
| COLSbbae | CO | km m-2 s-1 | xy | CO Chemical Loss (Asia and Europe Biomass Burning) |
| COLSbbaf | CO | km m-2 s-1 | xy | CO Chemical Loss (Africa Biomass Burning) |
| COLSbbbo | CO | km m-2 s-1 | xy | CO Chemical Loss (Boreal Biomass Burning) |
| COLSbbgl | CO | km m-2 s-1 | xy | CO Chemical Loss (Global Biomass Burning) |
| COLSbbla | CO | km m-2 s-1 | xy | CO Chemical Loss (Central and South America Biomass Burning) |
| COLSbbna | CO | km m-2 s-1 | xy | CO Chemical Loss (North America Biomass Burning) |
| COLSbbnb | CO | km m-2 s-1 | xy | CO Chemical Loss (Non-Boreal Biomass Burning) |
| COLSffas | CO | km m-2 s-1 | xy | CO Chemical Loss (Anthopogenic Emissions Southern Asia) |
| COLSffeu | CO | km m-2 s-1 | xy | CO Chemical Loss (Anthopogenic Emissions Europe) |
| COLSffna | CO | km m-2 s-1 | xy | CO Chemical Loss (Anthopogenic Emissions North America) |
| COLSffru | CO | km m-2 s-1 | xy | CO Chemical Loss (Anthopogenic Emissions Northern Asia) |
| COLSnbas | CO | kg m-2 s-1 | xy | CO Chemical Loss (Asia Non-Biomass Burning) |
| COLSnbeu | CO | kg m-2 s-1 | xy | CO Chemical Loss (European Non-Biomass Burning) |
| COLSnbgl | CO | kg m-2 s-1 | xy | CO Chemical Loss (Global Non-Biomass Burning) |
| COLSnbna | CO | kg m-2 s-1 | xy | CO Chemical Loss (North American Non-Biomass Burning) |
| CONGEL | Surface | m s-1 | xy | congelation ice growth |
| CONVCPT | FVdycore | W m-2 | xy | vertically integrated enthalpy convergence |
| CONVCPT | DynCore | W m-2 | xy | vertically integrated enthalpy convergence |
| CONVCPT | ARIESg3 | W m-2 | xy | vertically integrated enthalpy convergence |
| CONVKE | FVdycore | W m-2 | xy | vertically integrated kinetic energy convergence |
| CONVKE | DynCore | W m-2 | xy | vertically integrated kinetic energy convergence |
| CONVKE | ARIESg3 | W m-2 | xy | vertically integrated kinetic energy convergence |
| CONVPHI | FVdycore | W m-2 | xy | vertically integrated geopotential convergence |
| CONVPHI | DynCore | W m-2 | xy | vertically integrated geopotential convergence |
| CONVPHI | ARIESg3 | W m-2 | xy | vertically integrated geopotential convergence |
| CONVTHV | FVdycore | W m-2 | xy | vertically integrated thetav convergence |
| CONVTHV | DynCore | W m-2 | xy | vertically integrated thetav convergence |
| CONVTHV | ARIESg3 | W m-2 | xy | vertically integrated thetav convergence |
| COPD | CO | kg m-2 s-1 | xy | CO Chemical Production ENSEMBLE |
| COPDbbae | CO | kg m-2 s-1 | xy | CO Chemical Production (Asia and Europe Biomass Burning) |
| COPDbbaf | CO | kg m-2 s-1 | xy | CO Chemical Production (Africa Biomass Burning) |
| COPDbbbo | CO | kg m-2 s-1 | xy | CO Chemical Production (Boreal Biomass Burning) |
| COPDbbgl | CO | kg m-2 s-1 | xy | CO Chemical Production (Global Biomass Burning) |
| COPDbbla | CO | kg m-2 s-1 | xy | CO Chemical Production (Central and South America Biomass Burning) |
| COPDbbna | CO | kg m-2 s-1 | xy | CO Chemical Production (North America Biomass Burning) |
| COPDbbnb | CO | kg m-2 s-1 | xy | CO Chemical Production (Non-Boreal Biomass Burning) |
| COPDffas | CO | kg m-2 s-1 | xy | CO Chemical Production (Anthopogenic Emissions Southern Asia) |
| COPDffeu | CO | kg m-2 s-1 | xy | CO Chemical Production (Anthopogenic Emissions Europe) |
| COPDffna | CO | kg m-2 s-1 | xy | CO Chemical Production (Anthopogenic Emissions North America) |
| COPDffru | CO | kg m-2 s-1 | xy | CO Chemical Production (Anthopogenic Emissions Northern Asia) |
| COPDnbas | CO | kg m-2 s-1 | xy | CO Chemical Production (Asia Non-Biomass Burning) |
| COPDnbeu | CO | kg m-2 s-1 | xy | CO Chemical Production (European Non-Biomass Burning) |
| COPDnbgl | CO | kg m-2 s-1 | xy | CO Chemical Production (Global Non-Biomass Burning) |
| COPDnbna | CO | kg m-2 s-1 | xy | CO Chemical Production (North American Non-Biomass Burning) |
| COSC | CO | 1e-9 | xy | CO Surface Concentration in ppbv ENSEMBLE |
| COSCbbae | CO | 1e-9 | xy | CO Surface Concentration in ppbv (Asia and Europe Biomass Burning) |
| COSCbbaf | CO | 1e-9 | xy | CO Surface Concentration in ppbv (Africa Biomass Burning) |
| COSCbbbo | CO | 1e-9 | xy | CO Surface Concentration in ppbv (Boreal Biomass Burning) |
| COSCbbgl | CO | 1e-9 | xy | CO Surface Concentration in ppbv (Global Biomass Burning) |
| COSCbbla | CO | 1e-9 | xy | CO Surface Concentration in ppbv (Central and South America Biomass Burning) |
| COSCbbna | CO | 1e-9 | xy | CO Surface Concentration in ppbv (North America Biomass Burning) |
| COSCbbnb | CO | 1e-9 | xy | CO Surface Concentration in ppbv (Non-Boreal Biomass Burning) |
| COSCffas | CO | 1e-9 | xy | CO Surface Concentration in ppbv (Anthopogenic Emissions Southern Asia) |
| COSCffeu | CO | 1e-9 | xy | CO Surface Concentration in ppbv (Anthopogenic Emissions Europe) |
| COSCffna | CO | 1e-9 | xy | CO Surface Concentration in ppbv (Anthopogenic Emissions North America) |
| COSCffru | CO | 1e-9 | xy | CO Surface Concentration in ppbv (Anthopogenic Emissions Northern Asia) |
| COSCnbas | CO | 1e-9 | xy | CO Surface Concentration in ppbv (Asia Non-Biomass Burning) |
| COSCnbeu | CO | 1e-9 | xy | CO Surface Concentration in ppbv (European Non-Biomass Burning) |
| COSCnbgl | CO | 1e-9 | xy | CO Surface Concentration in ppbv (Global Non-Biomass Burning) |
| COSCnbna | CO | 1e-9 | xy | CO Surface Concentration in ppbv (North American Non-Biomass Burning) |
| COSZ | Solar | 1 | xy | cosine of the solar zenith angle |
| CPT | Agcm | J m-2 | xy | vertically integrated enthalpy |
| CQT | Lake | kg m-2 s-1 | tile | surface moisture exchange coefficient |
| CQT | Landice | kg m-2 s-1 | tile | surface moisture exchange coefficient |
| CQT | Catch | kg m-2 s-1 | tile | surface moisture exchange coefficient |
| CQT | Saltwater | kg m-2 s-1 | tile | surface moisture exchange coefficient |
| CTPISCCP | Satsim | 1 | xy | isccp air pressure at cloud top |
| CWP | Moist | kg m-2 | xy | condensed water path |
| D0 | Catch | m | tile | zero plane displacement height |
| DAIDTD | Surface | % day-1 | xy | ice area tendency dueto dynamics |
| DAIDTT | Surface | % day-1 | xy | ice area tendency dueto thermodynamics |
| DBCDT | Moist | kg m-2 s-1 | xy | black carbon tendency due to conv scav |
| DBUOY | Turbulence | m s-2 | xy | Buoyancy jump across inversion |
| DCLCNDTDYN | DatmoDyn | fraction | xyz | tendency of convective cloud fraction due to dynamics |
| DCLLSDTDYN | DatmoDyn | fraction | xyz | tendency of large scale cloud fraction due to dynamics |
| DCNVI | Moist | kg kg-1 s-1 | xyz | convective source of cloud ice |
| DCNVL | Moist | kg kg-1 s-1 | xyz | convective source of cloud liq |
| DCPT | FVdycore | W m-2 | xy | tendency of atmosphere dry energy content due to dynamics |
| DCPT | DynCore | W m-2 | xy | tendency of atmosphere dry energy content due to dynamics |
| DCPT | ARIESg3 | W m-2 | xy | tendency of atmosphere dry energy content due to dynamics |
| DCPTE | Moist | J m-2 | xy | Total VI DcpT |
| DDELPDTANA | FVdycore | K s-1 | xyz | tendency of pressure thickness due to analysis |
| DDELPDTANA | DynCore | K sec-1 | xyz | tendency of pressure thickness due to analysis |
| DDELPDTANA | ARIESg3 | K sec-1 | xyz | tendency of pressure thickness due to analysis |
| DDELPDTDYN | FVdycore | Pa s-1 | xyz | tendency of pressure thickness due to dynamics |
| DDELPDTDYN | DynCore | Pa sec-1 | xyz | tendency of pressure thickness due to dynamics |
| DDELPDTDYN | ARIESg3 | Pa sec-1 | xyz | tendency of pressure thickness due to dynamics |
| DDF_BYNC | Moist | m s-2 | xyz | Buoyancy of DDF |
| DDF_DQDT | Moist | kg kg-1 s-1 | xyz | Total Downdraft moistening |
| DDF_DTDT | Moist | K s-1 | xyz | Total Downdraft heating |
| DDF_MFC | Moist | kg m-2 s-1 | xyz | Downdraft mass flux |
| DDF_MUPH | Moist | kg kg-1 s-1 | xyz | Downdraft moistening from evap subl |
| DDF_QVC | Moist | kg kg-1 | xyz | Spec hum excess in DDF |
| DDF_RH1 | Moist | 1 | xyz | Downdraft in cloud RH before |
| DDF_RH2 | Moist | 1 | xyz | Downdraft in cloud RH after |
| DDF_TC | Moist | K | xyz | Temperature excess in DDF |
| DDF_ZSCALE | Moist | m | xy | vertical scale for downdraft |
| DDUDT | Moist | kg m-2 s-1 | xy | dust tendency due to conv scav |
| DDUDTcarma | Moist | kg m-2 s-1 | xy | carma dust tendency due to conv scav |
| DELEVAP | Catch | kg m-2 s-1 | tile | change evaporation |
| DELP | FVdycore | Pa | xyz | pressure thickness |
| DELP | DynCore | Pa | xyz | pressure thickness |
| DELP | ARIESg3 | Pa | xyz | pressure thickness |
| DELP | ChemEnv | Pa | xyz | pressure thickness |
| DELQS | Surface | kg kg-1 | xy | change of surface specific humidity |
| DELQS | Lake | kg kg-1 | tile | change of surface specific humidity |
| DELQS | Landice | kg kg-1 | tile | change of surface specific humidity |
| DELQS | Catch | kg kg-1 | tile | change surface specific humidity |
| DELQS | Saltwater | kg kg-1 | tile | change of surface specific humidity |
| DELSH | Catch | W m-2 | tile | change upward sensible energy flux |
| DELSINV | Turbulence | K | xy | Scaled Del s at Cloud top |
| DELSS | Surface | m+2 s-2 | xy | change of surface dry static energy |
| DELTS | Surface | K | xy | change of surface skin temperature |
| DELTS | Lake | K | tile | change of surface skin temperature |
| DELTS | Landice | K | tile | change of surface skin temperature |
| DELTS | Catch | K | tile | change surface skin temperature |
| DELTS | Saltwater | K | tile | change of surface skin temperature |
| DELUS | Surface | m s-1 | xy | change of surface eastward velocity |
| DELVS | Surface | m s-1 | xy | change of surface northward velocity |
| DFNIR | Radiation | W m-2 K-1 | xy | linearization of surface upwelling longwave flux |
| DFNIR | Solar | W m-2 | xy | surface downwelling nearinfrared diffuse flux |
| DFNIRN | Radiation | W m-2 K-1 | xy | linearization of surface upwelling longwave flux |
| DFNIRN | Solar | 1 | xy | normalized surface downwelling nearinfrared diffuse flux |
| DFPAR | Radiation | W m-2 K-1 | xy | linearization of surface upwelling longwave flux |
| DFPAR | Solar | W m-2 | xy | surface downwelling par diffuse flux |
| DFPARN | Radiation | W m-2 K-1 | xy | linearization of surface upwelling longwave flux |
| DFPARN | Solar | 1 | xy | normalized surface downwelling par diffuse flux |
| DFSTAR | Turbulence | kg m-2 s-1 | xy | change of surface fluxes for unit change of surface value |
| DFUVR | Radiation | W m-2 K-1 | xy | linearization of surface upwelling longwave flux |
| DFUVR | Solar | W m-2 | xy | surface downwelling ultraviolet diffuse flux |
| DFUVRN | Radiation | W m-2 K-1 | xy | linearization of surface upwelling longwave flux |
| DFUVRN | Solar | 1 | xy | normalized surface downwelling ultraviolet diffuse flux |
| DHLAND | Surface | W m-2 | xy | rate of change of total land energy |
| DHLAND | Catch | W m-2 | tile | rate of change of total land energy |
| DIFIX | Moist | kg kg-1 s-1 | xyz | fix source sink of cloud ice |
| DIPDF | Moist | kg kg-1 s-1 | xyz | pdf source sink of cloud ice |
| DIV | DatmoDyn | s-1 | xyz | divergence |
| DKE | FVdycore | W m-2 | xy | tendency of atmosphere kinetic energy content due to dynamics |
| DKE | DynCore | W m-2 | xy | tendency of atmosphere kinetic energy content due to dynamics |
| DKE | ARIESg3 | W m-2 | xy | tendency of atmosphere kinetic energy content due to dynamics |
| DKERESIN | FVdycore | W m-2 | xy | vertically integrated kinetic energy residual from inertial terms |
| DKERESIN | DynCore | W m-2 | xy | vertically integrated kinetic energy residual from inertial terms |
| DKERESIN | ARIESg3 | W m-2 | xy | vertically integrated kinetic energy residual from inertial terms |
| DKERESPG | FVdycore | W m-2 | xy | vertically integrated kinetic energy residual from PG terms |
| DKERESPG | DynCore | W m-2 | xy | vertically integrated kinetic energy residual from PG terms |
| DKERESPG | ARIESg3 | W m-2 | xy | vertically integrated kinetic energy residual from PG terms |
| DLFIX | Moist | kg kg-1 s-1 | xyz | fix source sink of cloud liq |
| DLPDF | Moist | kg kg-1 s-1 | xyz | pdf source sink of cloud liq |
| DLQIL | Surface | kg kg-1 | xy | change of surface frozen condensate |
| DLQLL | Surface | kg kg-1 | xy | change of surface liquid condensate |
| DMDTANA | FVdycore | kg m-2 s-1 | xy | vertically integrated mass tendency due to analysis |
| DMDTANA | DynCore | kg m-2 s-1 | xy | vertically integrated mass tendency due to analysis |
| DMDTANA | ARIESg3 | kg m-2 s-1 | xy | vertically integrated mass tendency due to analysis |
| DMDTDYN | FVdycore | kg m-2 s-1 | xy | vertically integrated mass tendency due to dynamics |
| DMDTDYN | DynCore | kg m-2 s-1 | xy | vertically integrated mass tendency due to dynamics |
| DMDTDYN | ARIESg3 | kg m-2 s-1 | xy | vertically integrated mass tendency due to dynamics |
| DMSCMASS | SU | kg m-2 | xy | DMS Column Mass Density |
| DMSSMASS | SU | kg m-3 | xy | DMS Surface Mass Concentration |
| DNICFLX | Landice | W m-2 | tile | downward heat flux in ice |
| DO3DT | mkiau | ppmv | xyz | ozone analysis increment |
| DO3DT_ANA | Agcm | 1e-6 s-1 | xyz | total ozone analysis tendency in ppmv sec-1 |
| DOCDT | Moist | kg m-2 s-1 | xy | organic carbon tendency due to conv scav |
| DOXDTANAINT | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| DOXDTANAINT | FVdycore | kg m-2 s-1 | xy | vertically integrated ozone tendency due to analysis |
| DOXDTANAINT | DynCore | kg m-2 s-1 | xy | vertically integrated ozone tendency due to analysis |
| DOXDTANAINT | ARIESg3 | kg m-2 s-1 | xy | vertically integrated ozone tendency due to analysis |
| DOXDTANAINT | DatmoDyn | kg m-2 s-1 | xy | vertically integrated ozone tendency due to analysis |
| DOXDTCHMINT | Physics | kg m-2 s-1 | xy | vertically integrated odd oxygen tendency due to chemistry |
| DOXDTDYN | FVdycore | kg kg-1 s-1 | xyz | tendency of ozone due to dynamics |
| DOXDTDYN | DynCore | kgkgsec | xyz | tendency of ozone due to dynamics |
| DOXDTDYN | ARIESg3 | kgkgsec | xyz | tendency of ozone due to dynamics |
| DOXDTDYNINT | FVdycore | kg m-2 s-1 | xy | vertically integrated ozone tendency due to dynamics |
| DOXDTDYNINT | DynCore | kg m-2 s-1 | xy | vertically integrated ozone tendency due to dynamics |
| DOXDTDYNINT | ARIESg3 | kg m-2 s-1 | xy | vertically integrated ozone tendency due to dynamics |
| DOXDTPHYINT | Physics | kg m-2 s-1 | xy | vertically integrated odd oxygen tendency due to physics |
| DPEDT | Physics | Pa s-1 | xyz | tendency of pressure at layer edges due to physics |
| DPEDT | mkiau | Pa | xyz | edge pressure analysis increment |
| DPEDT_ANA | Agcm | Pa s-1 | xyz | total edge pressure analysis tendency |
| DPET | FVdycore | W m-2 | xy | tendency of atmosphere topographic potential energy due to dynamics |
| DPET | DynCore | W m-2 | xy | tendency of atmosphere topographic potential energy due to dynamics |
| DPET | ARIESg3 | W m-2 | xy | tendency of atmosphere topographic potential energy due to dynamics |
| DQCDTCN | Moist | kg kg-1 s-1 | xyz | condensate tendency due to convection |
| DQDT | Moist | kg kg-1 s-1 | xyz | specific humidity tendency due to moist |
| DQDTCN | Moist | kg kg-1 s-1 | xyz | specific humidity tendency due to convection |
| DQI | FVdycore | kg m-2 s-1 | xy | tendency of atmosphere ice content due to dynamics |
| DQI | DynCore | kg m-2 s-1 | xy | tendency of atmosphere ice content due to dynamics |
| DQI | ARIESg3 | kg m-2 s-1 | xy | tendency of atmosphere ice content due to dynamics |
| DQICNDTDYN | DatmoDyn | kgkgsec | xyz | tendency of convective cloud ice due to dynamics |
| DQIDT | Moist | kg kg-1 s-1 | xyz | total ice water tendency due to moist |
| DQIDTANAINT | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| DQIDTANAINT | FVdycore | kg m-2 s-1 | xy | vertically integrated ice water tendency due to analysis |
| DQIDTANAINT | DynCore | kg m-2 s-1 | xy | vertically integrated ice water tendency due to analysis |
| DQIDTANAINT | ARIESg3 | kg m-2 s-1 | xy | vertically integrated ice water tendency due to analysis |
| DQIDTANAINT | DatmoDyn | kg m-2 s-1 | xy | vertically integrated ice water tendency due to analysis |
| DQIDTDYN | FVdycore | kg kg-1 s-1 | xyz | tendency of ice water due to dynamics |
| DQIDTDYN | DynCore | kgkgsec | xyz | tendency of ice water due to dynamics |
| DQIDTDYN | ARIESg3 | kgkgsec | xyz | tendency of ice water due to dynamics |
| DQIDTDYNINT | FVdycore | kg m-2 s-1 | xy | vertically integrated ice water tendency due to dynamics |
| DQIDTDYNINT | DynCore | kg m-2 s-1 | xy | vertically integrated ice water tendency due to dynamics |
| DQIDTDYNINT | ARIESg3 | kg m-2 s-1 | xy | vertically integrated ice water tendency due to dynamics |
| DQIDTMSTINT | Physics | kg m-2 s-1 | xy | vertically integrated ice tendency due to moist processes |
| DQIDTPHYINT | Physics | kg m-2 s-1 | xy | vertically integrated ice tendency due to physics |
| DQILSDTDYN | DatmoDyn | kgkgsec | xyz | tendency of large scale cloud ice due to dynamics |
| DQL | FVdycore | kg m-2 s-1 | xy | tendency of atmosphere liquid water content due to dynamics |
| DQL | DynCore | kg m-2 s-1 | xy | tendency of atmosphere liquid water content due to dynamics |
| DQL | ARIESg3 | kg m-2 s-1 | xy | tendency of atmosphere liquid water content due to dynamics |
| DQLCNDTDYN | DatmoDyn | kgkgsec | xyz | tendency of convective cloud water due to dynamics |
| DQLDT | Moist | kg kg-1 s-1 | xyz | total liq water tendency due to moist |
| DQLDTANAINT | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| DQLDTANAINT | FVdycore | kg m-2 s-1 | xy | vertically integrated liquid water tendency due to analysis |
| DQLDTANAINT | DynCore | kg m-2 s-1 | xy | vertically integrated liquid water tendency due to analysis |
| DQLDTANAINT | ARIESg3 | kg m-2 s-1 | xy | vertically integrated liquid water tendency due to analysis |
| DQLDTANAINT | DatmoDyn | kg m-2 s-1 | xy | vertically integrated liquid water tendency due to analysis |
| DQLDTDYN | FVdycore | kg kg-1 s-1 | xyz | tendency of liquid water due to dynamics |
| DQLDTDYN | DynCore | kgkgsec | xyz | tendency of liquid water due to dynamics |
| DQLDTDYN | ARIESg3 | kgkgsec | xyz | tendency of liquid water due to dynamics |
| DQLDTDYNINT | FVdycore | kg m-2 s-1 | xy | vertically integrated liquid water tendency due to dynamics |
| DQLDTDYNINT | DynCore | kg m-2 s-1 | xy | vertically integrated liquid water tendency due to dynamics |
| DQLDTDYNINT | ARIESg3 | kg m-2 s-1 | xy | vertically integrated liquid water tendency due to dynamics |
| DQLDTMSTINT | Physics | kg m-2 s-1 | xy | vertically integrated liquid water tendency due to moist processes |
| DQLDTPHYINT | Physics | kg m-2 s-1 | xy | vertically integrated liquid water tendency due to physics |
| DQLLSDTDYN | DatmoDyn | kgkgsec | xyz | tendency of large scale cloud water due to dynamics |
| DQRC | Moist | kg kg-1 s-1 | xyz | convective rainwater source |
| DQRL | Moist | kg kg-1 s-1 | xyz | large scale rainwater source |
| DQV | FVdycore | kg m-2 s-1 | xy | tendency of atmosphere water vapor content due to dynamics |
| DQV | DynCore | kg m-2 s-1 | xy | tendency of atmosphere water vapor content due to dynamics |
| DQV | ARIESg3 | kg m-2 s-1 | xy | tendency of atmosphere water vapor content due to dynamics |
| DQVDT | mkiau | kg kg-1 | xyz | specific humidity analysis increment |
| DQVDTANAINT | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| DQVDTANAINT | FVdycore | kg m-2 s-1 | xy | vertically integrated water vapor tendency due to analysis |
| DQVDTANAINT | DynCore | kg m-2 s-1 | xy | vertically integrated water vapor tendency due to analysis |
| DQVDTANAINT | ARIESg3 | kg m-2 s-1 | xy | vertically integrated water vapor tendency due to analysis |
| DQVDTANAINT | DatmoDyn | kg m-2 s-1 | xy | vertically integrated water vapor tendency due to analysis |
| DQVDTCHMINT | Physics | kg m-2 s-1 | xy | vertically integrated water vapor tendency due to chemistry |
| DQVDTDYN | FVdycore | kg kg-1 s-1 | xyz | tendency of specific humidity due to dynamics |
| DQVDTDYN | DynCore | kgkgsec | xyz | tendency of specific humidity due to dynamics |
| DQVDTDYN | ARIESg3 | kgkgsec | xyz | tendency of specific humidity due to dynamics |
| DQVDTDYN | DatmoDyn | kgkgsec | xyz | tendency of specific humidity due to dynamics |
| DQVDTDYNINT | FVdycore | kg m-2 s-1 | xy | vertically integrated water vapor tendency due to dynamics |
| DQVDTDYNINT | DynCore | kg m-2 s-1 | xy | vertically integrated water vapor tendency due to dynamics |
| DQVDTDYNINT | ARIESg3 | kg m-2 s-1 | xy | vertically integrated water vapor tendency due to dynamics |
| DQVDTDYNINT | DatmoDyn | kg m-2 s-1 | xy | vertically integrated water vapor tendency due to dynamics |
| DQVDTMSTINT | Physics | kg m-2 s-1 | xy | vertically integrated water vapor tendency due to moist processes |
| DQVDTPHYINT | Physics | kg m-2 s-1 | xy | vertically integrated water vapor tendency due to physics |
| DQVDTTRBINT | Physics | kg m-2 s-1 | xy | vertically integrated water vapor tendency due to turbulence |
| DQVDT_ANA | Agcm | kg kg-1 s-1 | xyz | total specific humidity analysis tendency |
| DRNIR | Radiation | W m-2 K-1 | xy | linearization of surface upwelling longwave flux |
| DRNIR | Solar | W m-2 | xy | surface downwelling nearinfrared beam flux |
| DRNIRN | Radiation | W m-2 K-1 | xy | linearization of surface upwelling longwave flux |
| DRNIRN | Solar | 1 | xy | normalized surface downwelling nearinfrared beam flux |
| DRNNIR | Solar | W m-2 | xy | surface downwelling nearinfrared beam normal flux |
| DRNPAR | Solar | W m-2 | xy | surface downwelling par beam normal flux |
| DRNUVR | Solar | W m-2 | xy | surface downwelling ultraviolet beam normal flux |
| DRPAR | Radiation | W m-2 K-1 | xy | linearization of surface upwelling longwave flux |
| DRPAR | Solar | W m-2 | xy | surface downwelling par beam flux |
| DRPARN | Radiation | W m-2 K-1 | xy | linearization of surface upwelling longwave flux |
| DRPARN | Solar | 1 | xy | normalized surface downwelling par beam flux |
| DRUVR | Radiation | W m-2 K-1 | xy | linearization of surface upwelling longwave flux |
| DRUVR | Solar | W m-2 | xy | surface downwelling ultraviolet beam flux |
| DRUVRN | Radiation | W m-2 K-1 | xy | linearization of surface upwelling longwave flux |
| DRUVRN | Solar | 1 | xy | normalized surface downwelling ultraviolet beam flux |
| DSFDTS | Irrad | W m-2 K-1 | xy | sensitivity of longwave flux emitted from surface to surface temperature |
| DSFDTS0 | Irrad | W m-2 K-1 | xy | sensitivity of longwave flux emitted from surface to surface temperature at reference time |
| DSIEMS | Turbulence | 1 | xy | Siems buoy rev parameter |
| DSSDT | Moist | kg m-2 s-1 | xy | sea salt tendency due to conv scav |
| DSSDTcarma | Moist | kg m-2 s-1 | xy | carma seasalt tendency due to conv scav |
| DSUDT | Moist | kg m-2 s-1 | xy | sulfate tendency due to conv scav |
| DTDT | Physics | Pa K s-1 | xyz | pressure weighted tendency of air temperature due to physics |
| DTDT | Radiation | Pa K s-1 | xyz | pressure weighted air temperature tendency due to radiation |
| DTDT | Gwd | Pa K s-1 | xyz | mass weighted air temperature tendency due to GWD |
| DTDT | mkiau | K | xyz | temperature analysis increment |
| DTDTANA | FVdycore | K s-1 | xyz | tendency of air temperature due to analysis |
| DTDTANA | DynCore | K sec-1 | xyz | tendency of air temperature due to analysis |
| DTDTANA | ARIESg3 | K sec-1 | xyz | tendency of air temperature due to analysis |
| DTDTDYN | FVdycore | K s-1 | xyz | tendency of air temperature due to dynamics |
| DTDTDYN | DynCore | K sec-1 | xyz | tendency of air temperature due to dynamics |
| DTDTDYN | ARIESg3 | K sec-1 | xyz | tendency of air temperature due to dynamics |
| DTDTDYN | DatmoDyn | K sec-1 | xyz | tendency of air temperature due to dynamics |
| DTDTFRIC | Moist | Pa K s-1 | xyz | pressure weighted temperature tendency due to moist friction |
| DTDTRAD | Physics | K s-1 | xyz | tendency of air temperature due to radiation |
| DTDTTOT | Physics | K s-1 | xyz | tendency of air temperature due to physics |
| DTDT_ANA | Agcm | K s-1 | xyz | total temperature analysis tendency |
| DTDT_BKG | Gwd | K s-1 | xyz | air temperature tendency due to background GWD |
| DTDT_ORO | Gwd | K s-1 | xyz | air temperature tendency due to orographic GWD |
| DTDT_RAY | Gwd | K s-1 | xyz | air temperature tendency due to Rayleigh friction |
| DTHDT | Moist | Pa K s-1 | xyz | pressure weighted potential temperature tendency due to moist |
| DTHDTCN | Moist | K s-1 | xyz | potential temperature tendency due to convection |
| DTHVDTANAINT | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| DTHVDTANAINT | FVdycore | K kg m-2 s-1 | xy | vertically integrated THV tendency due to analysis |
| DTHVDTANAINT | DynCore | K kg m-2 s-1 | xy | vertically integrated THV tendency due to analysis |
| DTHVDTANAINT | ARIESg3 | K kg m-2 s-1 | xy | vertically integrated THV tendency due to analysis |
| DTHVDTANAINT | DatmoDyn | K kg m-2 s-1 | xy | vertically integrated THV tendency due to analysis |
| DTHVDTCONSV | FVdycore | K kg m-2 s-1 | xy | vertically integrated THV tendency due to TE conservation |
| DTHVDTCONSV | DynCore | K kg m-2 s-1 | xy | vertically integrated THV tendency due to TE conservation |
| DTHVDTCONSV | ARIESg3 | K kg m-2 s-1 | xy | vertically integrated THV tendency due to TE conservation |
| DTHVDTDYNINT | FVdycore | K kg m-2 s-1 | xy | vertically integrated THV tendency due to dynamics |
| DTHVDTDYNINT | DynCore | K kg m-2 s-1 | xy | vertically integrated THV tendency due to dynamics |
| DTHVDTDYNINT | ARIESg3 | K kg m-2 s-1 | xy | vertically integrated THV tendency due to dynamics |
| DTHVDTFILINT | Agcm | K kg m-2 s-1 | xy | vertically integrated thv adjustment from filling |
| DTHVDTPHYINT | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| DTHVDTPHYINT | FVdycore | K kg m-2 s-1 | xy | vertically integrated THV tendency due to physics |
| DTHVDTPHYINT | DynCore | K kg m-2 s-1 | xy | vertically integrated THV tendency due to physics |
| DTHVDTPHYINT | ARIESg3 | K kg m-2 s-1 | xy | vertically integrated THV tendency due to physics |
| DTHVDTPHYINT | DatmoDyn | K kg m-2 s-1 | xy | vertically integrated THV tendency due to physics |
| DTHVDTREMAP | FVdycore | K kg m-2 s-1 | xy | vertically integrated THV tendency due to vertical remapping |
| DTHVDTREMAP | DynCore | K kg m-2 s-1 | xy | vertically integrated THV tendency due to vertical remapping |
| DTHVDTREMAP | ARIESg3 | K kg m-2 s-1 | xy | vertically integrated THV tendency due to vertical remapping |
| DU | Turbulence | s-1 | xyz | bulk shear from Louis |
| DUAERIDX | DU | 1 | xy | Dust TOMS UV Aerosol Index |
| DUANA | GAAS | kgkg | xyz | Dust Mixing Ratio Analysis |
| DUANGSTR | DU | 1 | xy | Dust Angstrom parameter [470-870 nm] |
| DUCMASS | DU | kg m-2 | xy | Dust Column Mass Density |
| DUCMASS25 | DU | kg m-2 | xy | Dust Column Mass Density - PM 2.5 |
| DUCONC | DU | kg m-3 | xyz | Dust Mass Concentration |
| DUDP001 | DU | kg m-2 s-1 | xy | Dust Dry Deposition Bin 001 |
| DUDP002 | DU | kg m-2 s-1 | xy | Dust Dry Deposition Bin 002 |
| DUDP003 | DU | kg m-2 s-1 | xy | Dust Dry Deposition Bin 003 |
| DUDP004 | DU | kg m-2 s-1 | xy | Dust Dry Deposition Bin 004 |
| DUDP005 | DU | kg m-2 s-1 | xy | Dust Dry Deposition Bin 005 |
| DUDT | Physics | m s-2 | xyz | tendency of eastward wind due to physics |
| DUDT | Moist | m s-2 | xyz | zonal wind tendency due to moist |
| DUDT | Gwd | m s-2 | xyz | tendency of eastward wind due to GWD |
| DUDT | mkiau | m s-1 | xyz | eastward wind analysis increment |
| DUDTANA | FVdycore | m s-2 | xyz | tendency of eastward wind due to analysis |
| DUDTANA | DynCore | msecsec | xyz | tendency of eastward wind due to analysis |
| DUDTANA | ARIESg3 | msecsec | xyz | tendency of eastward wind due to analysis |
| DUDTDYN | FVdycore | m s-2 | xyz | tendency of eastward wind due to dynamics |
| DUDTDYN | DynCore | msecsec | xyz | tendency of eastward wind due to dynamics |
| DUDTDYN | ARIESg3 | msecsec | xyz | tendency of eastward wind due to dynamics |
| DUDT_ANA | Agcm | m s-2 | xyz | total eastward wind analysis tendency |
| DUDT_BKG | Gwd | m s-2 | xyz | tendency of eastward wind due to background GWD |
| DUDT_ORO | Gwd | m s-2 | xyz | tendency of eastward wind due to orographic GWD |
| DUDT_RAY | Gwd | m s-2 | xyz | tendency of eastward wind due to Rayleigh friction |
| DUEM001 | DU | kg m-2 s-1 | xy | Dust Emission Bin 001 |
| DUEM002 | DU | kg m-2 s-1 | xy | Dust Emission Bin 002 |
| DUEM003 | DU | kg m-2 s-1 | xy | Dust Emission Bin 003 |
| DUEM004 | DU | kg m-2 s-1 | xy | Dust Emission Bin 004 |
| DUEM005 | DU | kg m-2 s-1 | xy | Dust Emission Bin 005 |
| DUEXTCOEF | DU | m-1 | xyz | Dust Extinction Coefficient [550 nm] |
| DUEXTT25 | DU | 1 | xy | Dust Extinction AOT [550 nm] - PM 2.5 |
| DUEXTTAU | DU | 1 | xy | Dust Extinction AOT [550 nm] |
| DUEXTTFM | DU | 1 | xy | Dust Extinction AOT [550 nm] - PM 1.0 um |
| DUFLUXU | DU | kg m-1 s-1 | xy | Dust column u-wind mass flux |
| DUFLUXV | DU | kg m-1 s-1 | xy | Dust column v-wind mass flux |
| DUINC | GAAS | kgkg | xyz | Dust Mixing Ratio Analysis Increments |
| DUMASS | DU | kg kg-1 | xyz | Dust Mass Mixing Ratio |
| DUMASS25 | DU | kg kg-1 | xyz | Dust Mass Mixing Ratio - PM 2.5 |
| DUSCACOEF | DU | m-1 | xyz | Dust Scattering Coefficient [550 nm] |
| DUSCAT25 | DU | 1 | xy | Dust Scattering AOT [550 nm] - PM 2.5 |
| DUSCATAU | DU | 1 | xy | Dust Scattering AOT [550 nm] |
| DUSCATFM | DU | 1 | xy | Dust Scattering AOT [550 nm] - PM 1.0 um |
| DUSD001 | DU | kg m-2 s-1 | xy | Dust Sedimentation Bin 001 |
| DUSD002 | DU | kg m-2 s-1 | xy | Dust Sedimentation Bin 002 |
| DUSD003 | DU | kg m-2 s-1 | xy | Dust Sedimentation Bin 003 |
| DUSD004 | DU | kg m-2 s-1 | xy | Dust Sedimentation Bin 004 |
| DUSD005 | DU | kg m-2 s-1 | xy | Dust Sedimentation Bin 005 |
| DUSMASS | DU | kg m-3 | xy | Dust Surface Mass Concentration |
| DUSMASS25 | DU | kg m-3 | xy | Dust Surface Mass Concentration - PM 2.5 |
| DUST | PChem | kg kg-1 | xyz | mineral dust mixing ratio |
| DUSTOD | GMIchem | 1 | xyz | Dust optical depth (400 nm) |
| DUSTSA | GMIchem | cm2cm3 | xyz | Dust surface area |
| DUWT001 | DU | kg m-2 s-1 | xy | Dust Wet Deposition Bin 001 |
| DUWT002 | DU | kg m-2 s-1 | xy | Dust Wet Deposition Bin 002 |
| DUWT003 | DU | kg m-2 s-1 | xy | Dust Wet Deposition Bin 003 |
| DUWT004 | DU | kg m-2 s-1 | xy | Dust Wet Deposition Bin 004 |
| DUWT005 | DU | kg m-2 s-1 | xy | Dust Wet Deposition Bin 005 |
| DVDT | Physics | m s-2 | xyz | tendency of northward wind due to physics |
| DVDT | Moist | m s-2 | xyz | meridional wind tendency due to moist |
| DVDT | Gwd | m s-2 | xyz | tendency of northward wind due to GWD |
| DVDT | mkiau | m s-1 | xyz | northward wind analysis increment |
| DVDTANA | FVdycore | m s-2 | xyz | tendency of northward wind due to analysis |
| DVDTANA | DynCore | msecsec | xyz | tendency of northward wind due to analysis |
| DVDTANA | ARIESg3 | msecsec | xyz | tendency of northward wind due to analysis |
| DVDTDYN | FVdycore | m s-2 | xyz | tendency of northward wind due to dynamics |
| DVDTDYN | DynCore | msecsec | xyz | tendency of northward wind due to dynamics |
| DVDTDYN | ARIESg3 | msecsec | xyz | tendency of northward wind due to dynamics |
| DVDT_ANA | Agcm | m s-2 | xyz | total northward wind analysis tendency |
| DVDT_BKG | Gwd | m s-2 | xyz | tendency of northward wind due to background GWD |
| DVDT_ORO | Gwd | m s-2 | xyz | tendency of northward wind due to orographic GWD |
| DVDT_RAY | Gwd | m s-2 | xyz | tendency of northward wind due to Rayleigh friction |
| DVIDTD | Surface | cm day-1 | xy | ice volume tendency dueto dynamics |
| DVIDTT | Surface | cm day-1 | xy | ice volume tendency dueto thermodynamics |
| DWLAND | Surface | kg m-2 s-1 | xy | rate of change of total land water |
| DWLAND | Catch | kg m-2 s-1 | tile | rate of change of total land water |
| DYNTROPP | GMIchem | Pa | xyz | Tropopause pressure from chemistry |
| DZ | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| DZ | FVdycore | m | xy | surface layer height |
| DZ | DynCore | m | xy | surface layer height |
| DZ | ARIESg3 | m | xy | surface layer height |
| DZ | DatmoDyn | m | xy | Surface layer height |
| EKH | Turbulence | m+2 s-1 | xyz | entrainment heat diffusivity from Lock |
| EKM | Turbulence | m+2 s-1 | xyz | entrainment momentum diffusivity from Lock |
| EMBIOCOMETH | GMIchem | kg m-2 s-1 | xy | biogenic source of CO from oxidation of methanol |
| EMBIOCOMONOT | GMIchem | kg m-2 s-1 | xy | biogenic source of CO from oxidation of monoterpenes |
| EMBIOPROPENE | GMIchem | kg m-2 s-1 | xy | biogenic source of propene |
| EMIS | Surface | 1 | xy | surface emissivity |
| EMIS | Lake | 1 | tile | surface emissivity |
| EMIS | Landice | 1 | tile | surface emissivity |
| EMIS | Catch | 1 | tile | surface emissivity |
| EMIS | Saltwater | 1 | tile | surface emissivity |
| EMISOPSFC | GMIchem | kg m-2 s-1 | xy | surface emission of isoprene |
| EMMONOT | GMIchem | kg m-2 s-1 | xy | surface emission of monoterpenes |
| EMNOX | GMIchem | kg m-2 s-1 | xy | surface emission of odd nitrogen |
| EMSHIPHNO3 | GMIchem | kg m-2 s-1 | xy | surface ship source of nitric acid |
| EMSHIPO3 | GMIchem | kg m-2 s-1 | xy | surface ship source of ozone |
| EMSOILNOX | GMIchem | kg m-2 s-1 | xy | soil source of odd nitrogen |
| EM_ACET | GMIchem | kg m-2 s-1 | xy | acetone emissions |
| EM_ALD2 | GMIchem | kg m-2 s-1 | xy | acetaldehyde (C2H4O) emissions |
| EM_ALK4 | GMIchem | kg m-2 s-1 | xy | C45 alkanes (C4H10) emissions |
| EM_C2H6 | GMIchem | kg m-2 s-1 | xy | ethane emissions |
| EM_C3H8 | GMIchem | kg m-2 s-1 | xy | propane emissions |
| EM_CH2O | GMIchem | kg m-2 s-1 | xy | formaldehyde emissions |
| EM_CH4 | GMIchem | kg m-2 s-1 | xy | methane emissions |
| EM_CO | GMIchem | kg m-2 s-1 | xy | carbon monoxide emissions |
| EM_MEK | GMIchem | kg m-2 s-1 | xy | methyl ethyl ketone (C4H8O) emissions |
| EM_NO | GMIchem | kg m-2 s-1 | xyz | nitrous oxide emissions |
| EM_PRPE | GMIchem | kg m-2 s-1 | xy | propene (C3H6) emissions |
| ENTLAM | Moist | kg m-2 s-1 | xyz | entrainment parameter |
| EPV | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| EPV | FVdycore | K m+2 kg-1 s-1 | xyz | ertels potential vorticity |
| EPV | DynCore | K m+2 kg-1 sec-1 | xyz | ertels potential vorticity |
| EPV | ARIESg3 | K m+2 kg-1 sec-1 | xyz | ertels potential vorticity |
| EPV | DatmoDyn | K m+2 kg-1 sec-1 | xyz | ertels potential vorticity |
| ER_PRCP | Moist | kg m-2 s-1 | xy | spurious rain from RH cleanup |
| EVAP | Surface | kg m-2 s-1 | xy | evaporation from turbulence |
| EVAPC | Moist | kg kg-1 s-1 | xyz | evaporation of cloud liq |
| EVAPOUT | Surface | kg m-2 s-1 | xy | evaporation |
| EVAPOUT | Lake | kg m-2 s-1 | tile | evaporation |
| EVAPOUT | Landice | kg m-2 s-1 | tile | evaporation |
| EVAPOUT | Catch | kg m-2 s-1 | tile | evaporation |
| EVAPOUT | Saltwater | kg m-2 s-1 | tile | evaporation |
| EVLAND | Surface | kg m-2 s-1 | xy | Evaporation land |
| EVLAND | Catch | kg m-2 s-1 | tile | Evaporation land |
| EVPCZ | Moist | kg m-2 s-1 | xy | evaporation loss of cloud water |
| EVPICE | Surface | W m-2 | xy | snow ice evaporation energy flux |
| EVPICE | Landice | W m-2 | tile | snow ice evaporation energy flux |
| EVPICE | Catch | W m-2 | tile | snow ice evaporation energy flux |
| EVPINT | Surface | W m-2 | xy | interception loss energy flux |
| EVPINT | Catch | W m-2 | tile | interception loss energy flux |
| EVPPZ | Moist | kg m-2 s-1 | xy | evaporation loss of precip water |
| EVPSNO | Surface | W m-2 | xy | snowpack evaporation energy flux |
| EVPSNO | Catch | W m-2 | tile | snowpack evaporation energy flux |
| EVPSOI | Surface | W m-2 | xy | baresoil evap energy flux |
| EVPSOI | Catch | W m-2 | tile | baresoil evap energy flux |
| EVPVEG | Surface | W m-2 | xy | transpiration energy flux |
| EVPVEG | Catch | W m-2 | tile | transpiration energy flux |
| F113FLX | StratChem | kgs | xy | derived CFC-113 surface flux |
| F11FLX | StratChem | kgs | xy | derived CFC-11 surface flux |
| F12FLX | StratChem | kgs | xy | derived CFC-12 surface flux |
| FBOT | Surface | W m-2 | xy | net downward heat flux from ice to ocean |
| FCLD | Moist | 1 | xyz | cloud fraction for radiation |
| FCLD | Radiation | W m-2 K-1 | xy | linearization of surface upwelling longwave flux |
| FCLD | Solar | 1 | xyz | cloud area fraction |
| FHOCN | Surface | W m-2 | xy | actual ocean ice flux |
| FILLNQV | Moist | kg m-2 s-1 | xy | filling of negative Q |
| FLA | Irrad | W m-2 | xyz | net downward longwave flux in air assuming clear sky and no aerosol |
| FLAD | Irrad | W m-2 | xyz | downward longwave flux in air assuming clear sky and no aerosol |
| FLAU | Irrad | W m-2 | xyz | upward longwave flux in air assuming clear sky and no aerosol |
| FLC | Irrad | W m-2 | xyz | net downward longwave flux in air assuming clear sky |
| FLCD | Irrad | W m-2 | xyz | downward longwave flux in air assuming clear sky |
| FLCU | Irrad | W m-2 | xyz | upward longwave flux in air assuming clear sky |
| FLNS | Irrad | W m-2 | xy | surface net downward longwave flux |
| FLNSA | Irrad | W m-2 | xy | surface net downward longwave flux assuming clear sky and no aerosol |
| FLNSC | Irrad | W m-2 | xy | surface net downward longwave flux assuming clear sky |
| FLX | Irrad | W m-2 | xyz | net downward longwave flux in air |
| FLXD | Irrad | W m-2 | xyz | downward longwave flux in air |
| FLXU | Irrad | W m-2 | xyz | upward longwave flux in air |
| FRACI | Gcm | |||
| FRACI | Agcm | m+2 | xy | isotropic variance of filtered topography |
| FRACI | Physics | kg m-2 s-1 | xy | vertically integrated odd oxygen tendency due to physics |
| FRACI | Surface | 1 | xy | ice covered fraction of tile |
| FRACI | Saltwater | 1 | tile | ice covered fraction of tile |
| FRACICE | Ogcm | 1 | tile | fractional cover of seaice |
| FRACICE | DataSeaIce | 1 | xy | fractional cover of seaice |
| FRAZIL | Surface | m s-1 | xy | frazil ice growth |
| FRLAKE | Gcm | |||
| FRLAKE | Agcm | m+2 | xy | isotropic variance of filtered topography |
| FRLAKE | Physics | kg m-2 s-1 | xy | vertically integrated odd oxygen tendency due to physics |
| FRLAKE | Surface | 1 | xy | fraction of lake |
| FRLAND | Gcm | |||
| FRLAND | Agcm | m+2 | xy | isotropic variance of filtered topography |
| FRLAND | Physics | kg m-2 s-1 | xy | vertically integrated odd oxygen tendency due to physics |
| FRLAND | Surface | 1 | xy | fraction of land |
| FRLANDICE | Agcm | m+2 | xy | isotropic variance of filtered topography |
| FRLANDICE | Physics | kg m-2 s-1 | xy | vertically integrated odd oxygen tendency due to physics |
| FRLANDICE | Surface | 1 | xy | fraction of land ice |
| FRLANDICE& | Gcm | |||
| FRLANDX0 | Moist | 1 | xy | areal land fraction |
| FROCEAN | Gcm | |||
| FROCEAN | Agcm | m+2 | xy | isotropic variance of filtered topography |
| FROCEAN | Physics | kg m-2 s-1 | xy | vertically integrated odd oxygen tendency due to physics |
| FROCEAN | Surface | 1 | xy | fraction of ocean |
| FROCEAN | Orad | 1 | xy | ocean fraction of grid cell |
| FRSAT | Surface | 1 | xy | fractional area of saturated zone |
| FRSAT | Catch | 1 | tile | fractional area of saturated zone |
| FRUST | Surface | 1 | xy | fractional area of unsaturated zone |
| FRUST | Catch | 1 | tile | fractional area of unsaturated zone |
| FRWLT | Surface | 1 | xy | fractional area of wilting zone |
| FRWLT | Catch | 1 | tile | fractional area of wilting zone |
| FRZCZ | Moist | kg m-2 s-1 | xy | net freezing of cloud condensate |
| FRZMLT | Surface | W m-2 | xy | freezing melting potential |
| FRZPZ | Moist | kg m-2 s-1 | xy | net freezing of precip condensate |
| FRZ_PP | Moist | kg kg-1 s-1 | xyz | freezing of precip condensate |
| FRZ_TT | Moist | kg kg-1 s-1 | xyz | freezing of cloud condensate |
| FSC | Solar | W m-2 | xyz | net downward shortwave flux in air assuming clear sky |
| FSCD | Solar | W m-2 | xyz | downward shortwave flux in air assuming clear sky |
| FSCDNA | Solar | W m-2 | xyz | downward shortwave flux in air assuming clear sky and no aerosol |
| FSCNA | Solar | W m-2 | xyz | net downward shortwave flux in air assuming clear sky and no aerosol |
| FSCU | Solar | W m-2 | xyz | upward shortwave flux in air assuming clear sky |
| FSCUNA | Solar | W m-2 | xyz | upward shortwave flux in air assuming clear sky and no aerosol |
| FSTAR | Turbulence | X kg m-2 s-1 | xy | surface fluxes |
| FSW | Solar | W m-2 | xyz | net downward shortwave flux in air |
| FSWABS | Surface | W m-2 | xy | SW flux absorbed by skin layer |
| FSWD | Solar | W m-2 | xyz | downward shortwave flux in air |
| FSWDNA | Solar | W m-2 | xyz | downward shortwave flux in air assuming no aerosol |
| FSWNA | Solar | W m-2 | xyz | net downward shortwave flux in air assuming no aerosol |
| FSWTHRU | Surface | W m-2 | xy | SW flux thru ice to ocean |
| FSWU | Solar | W m-2 | xyz | upward shortwave flux in air |
| FSWUNA | Solar | W m-2 | xyz | upward shortwave flux in air assuming no aerosol |
| FTB | Physics | W m-2 | xyz | upward net turbulence heat flux |
| FTU | Physics | m+2 s-2 | xyz | upward net turbulence eastward momentum flux |
| FTV | Physics | m+2 s-2 | xyz | upward net turbulence northward momentum flux |
| GHFLX | Catch | W m-2 | tile | ground energy flux |
| GHLAND | Surface | W m-2 | xy | Ground heating land |
| GHLAND | Catch | W m-2 | tile | Ground heating land |
| GMIAOA | GMIchem | years | xyz | Age-of-air from GMICHEM |
| GMIH2O | GMIchem | molmol | xyz | Gas phase water from GMICHEM |
| GRN | Surface | 1 | xy | greeness fraction |
| GRN | Vegdyn | 1 | tile | greeness fraction |
| GUST | Surface | m s-1 | xy | gustiness |
| GUST | Lake | m s-1 | tile | gustiness |
| GUST | Landice | m s-1 | tile | gustiness |
| GUST | Catch | m s-1 | tile | gustiness |
| GUST | Saltwater | m s-1 | tile | gustiness |
| GWDVARX | Agcm | m+2 | xy | east-west variance of GWD topography |
| GWDVARXY | Agcm | m+2 | xy | SW-NE variance of GWD topography |
| GWDVARY | Agcm | m+2 | xy | north-south variance of GWD topography |
| GWDVARYX | Agcm | m+2 | xy | NW-SE variance of GWD topography |
| H | Orad | dyn-m | xyz | Layer mass |
| H1000 | FVdycore | m | xy | height at 1000 mb |
| H1000 | DynCore | m | xy | height at 1000 mb |
| H1000 | ARIESg3 | m | xy | height at 1000 mb |
| H1224FLX | StratChem | kgs | xy | derived H1224 surface flux |
| H1301FLX | StratChem | kgs | xy | derived H1301 surface flux |
| H250 | FVdycore | m | xy | height at 250 hPa |
| H250 | DynCore | m | xy | height at 250 hPa |
| H250 | ARIESg3 | m | xy | height at 250 hPa |
| H2O_LOSS | PChem | s-1 | xyz | tendency of specific humidity due to loss |
| H2O_PROD | PChem | s-1 | xyz | tendency of specific humidity due to production |
| H2O_TEND | GMIchem | kg kg-1 s-1 | xyz | tendency of water vapor mixing ratio due to chemistry |
| H2O_TEND | StratChem | kg kg-1 s-1 | xyz | tendency of water vapor mixing ratio due to chemistry |
| H2O_TEND | PChem | kg kg-1 s-1 | xyz | tendency of water vapor mixing ratio due to chemistry |
| H300 | DynCore | m | xy | height at 300 hPa |
| H500 | FVdycore | m | xy | height at 500 hPa |
| H500 | DynCore | m | xy | height at 500 hPa |
| H500 | ARIESg3 | m | xy | height at 500 hPa |
| H700 | DynCore | m | xy | height at 700 hPa |
| H850 | FVdycore | m | xy | height at 850 hPa |
| H850 | DynCore | m | xy | height at 850 hPa |
| H850 | ARIESg3 | m | xy | height at 850 hPa |
| HCFC22_LOSS | PChem | mol mol-1 s-1 | xyz | tendency of HCFC22 volume mixing ratio due to loss |
| HCFC22_PROD | PChem | mol mol-1 s-1 | xyz | tendency of HCFC22 volume mixing ratio due to production |
| HCFCFLX | StratChem | kgs | xy | derived HCFC surface flux |
| HDQDTDYN | DatmoDyn | kgkgsec | xyz | horiz tendency of specific humidity due to dynamics |
| HDTDTDYN | DatmoDyn | K sec-1 | xyz | horiz tendency of air temperature due to dynamics |
| HDTHDTDYN | DatmoDyn | K sec-1 | xyz | horiz tendency of air pot temp due to dynamics |
| HFLUX | Surface | W m-2 | xy | heat flux bw saltwater ocean |
| HICE | Gcm | |||
| HICE | Surface | m | xy | grid cell mean ice thickness |
| HICE | Ogcm | N m-2 | tile | northward stress at base of ice |
| HLATICE | Surface | W m-2 | xy | sea ice latent energy flux |
| HLATICE | Saltwater | W m-2 | tile | sea ice latent energy flux |
| HLATN | Lake | W m-2 | tile | total latent energy flux |
| HLATN | Landice | W m-2 | tile | total latent energy flux |
| HLATN | Catch | W m-2 | tile | total latent energy flux |
| HLATN | Saltwater | W m-2 | tile | total latent energy flux |
| HLATWTR | Surface | W m-2 | xy | open water latent energy flux |
| HLATWTR | Saltwater | W m-2 | tile | open water latent energy flux |
| HLWUP | Surface | W m-2 | xy | surface outgoing longwave flux |
| HLWUP | Lake | W m-2 | tile | surface outgoing longwave flux |
| HLWUP | Landice | W m-2 | tile | surface outgoing longwave flux |
| HLWUP | Catch | W m-2 | tile | surface outgoing longwave flux |
| HLWUP | Saltwater | W m-2 | tile | surface outgoing longwave flux |
| HNO3COND | GMIchem | mol mol-1 | xyz | Condensed nitric acid |
| HNO3GAS | GMIchem | mol mol-1 | xyz | Gas phase nitric acid |
| HO2PBLFLAG | GMIchem | 0-1 | xyz | PBL flag for HO2 loss in aerosols |
| HSNO | Surface | m | xy | grid cell mean snow thickness |
| ICESAD | StratChem | m^{-1} | xyz | surface area density water ice PSC |
| ICESOI | Surface | kg m-2 | xy | soil frozen water content |
| ICESOI | Catch | kg m-2 | tile | soil frozen water content |
| INHB | Moist | 1 | xy | inhibition for surface parcel |
| INTDIS | Turbulence | K s-1 Pa | xyz | p-weighted frictional heating rate from diffusion |
| ISCCP1 | Satsim | 1 | xy | isccp output 0 180 hPa |
| ISCCP2 | Satsim | 1 | xy | isccp output 180 310 hPa |
| ISCCP3 | Satsim | 1 | xy | isccp output 310 440 hPa |
| ISCCP4 | Satsim | 1 | xy | isccp output 440 560 hPa |
| ISCCP5 | Satsim | 1 | xy | isccp output 560 680 hPa |
| ISCCP6 | Satsim | 1 | xy | isccp output 680 800 hPa |
| ISCCP7 | Satsim | 1 | xy | isccp output 800 SFC hPa |
| ISCCP_ACU_OA | Satsim | 1 | xy | fraction of thin higher altocumulus |
| ISCCP_ACU_OB | Satsim | 1 | xy | fraction of thick higher altocumulus |
| ISCCP_ACU_UA | Satsim | 1 | xy | fraction of thin lower altocumulus |
| ISCCP_ACU_UB | Satsim | 1 | xy | fraction of thick lower altocumulus |
| ISCCP_AST_OA | Satsim | 1 | xy | fraction of thin higher altostratus |
| ISCCP_AST_OB | Satsim | 1 | xy | fraction of thick higher altostratus |
| ISCCP_AST_UA | Satsim | 1 | xy | fraction of thin lower altostratus |
| ISCCP_AST_UB | Satsim | 1 | xy | fraction of thick lower altostratus |
| ISCCP_CB_MA | Satsim | 1 | xy | fraction of thin middle cumulonimbus |
| ISCCP_CB_MB | Satsim | 1 | xy | fraction of thick middle cumulonimbus |
| ISCCP_CB_OA | Satsim | 1 | xy | fraction of thin higher cumulonimbus |
| ISCCP_CB_OB | Satsim | 1 | xy | fraction of thick higher cumulonimbus |
| ISCCP_CB_UA | Satsim | 1 | xy | fraction of thin lower cumulonimbus |
| ISCCP_CB_UB | Satsim | 1 | xy | fraction of thick lower cumulonimbus |
| ISCCP_CIST_MA | Satsim | 1 | xy | fraction of thin middle cirrostratus |
| ISCCP_CIST_MB | Satsim | 1 | xy | fraction of thick middle cirrostratus |
| ISCCP_CIST_OA | Satsim | 1 | xy | fraction of thin higher cirrostratus |
| ISCCP_CIST_OB | Satsim | 1 | xy | fraction of thick higher cirrostratus |
| ISCCP_CIST_UA | Satsim | 1 | xy | fraction of thin lower cirrostratus |
| ISCCP_CIST_UB | Satsim | 1 | xy | fraction of thick lower cirrostratus |
| ISCCP_CI_MA | Satsim | 1 | xy | fraction of thin middle cirrus |
| ISCCP_CI_MB | Satsim | 1 | xy | fraction of thick middle cirrus |
| ISCCP_CI_OA | Satsim | 1 | xy | fraction of thin higher cirrus |
| ISCCP_CI_OB | Satsim | 1 | xy | fraction of thick higher cirrus |
| ISCCP_CI_UA | Satsim | 1 | xy | fraction of thin lower cirrus |
| ISCCP_CI_UB | Satsim | 1 | xy | fraction of thick lower cirrus |
| ISCCP_CU_OA | Satsim | 1 | xy | fraction of thin higher cumulus |
| ISCCP_CU_OB | Satsim | 1 | xy | fraction of thick higher cumulus |
| ISCCP_CU_UA | Satsim | 1 | xy | fraction of thin lower cumulus |
| ISCCP_CU_UB | Satsim | 1 | xy | fraction of thick lower cumulus |
| ISCCP_NST_OA | Satsim | 1 | xy | fraction of thin higher nimbostratus |
| ISCCP_NST_OB | Satsim | 1 | xy | fraction of thick higher nimbostratus |
| ISCCP_NST_UA | Satsim | 1 | xy | fraction of thin lower nimbostratus |
| ISCCP_NST_UB | Satsim | 1 | xy | fraction of thick lower nimbostratus |
| ISCCP_STCU_OA | Satsim | 1 | xy | fraction of thin higher stratocumulus |
| ISCCP_STCU_OB | Satsim | 1 | xy | fraction of thick higher stratocumulus |
| ISCCP_STCU_UA | Satsim | 1 | xy | fraction of thin lower stratocumulus |
| ISCCP_STCU_UB | Satsim | 1 | xy | fraction of thick lower stratocumulus |
| ISCCP_ST_OA | Satsim | 1 | xy | fraction of thin higher stratus |
| ISCCP_ST_OB | Satsim | 1 | xy | fraction of thick higher stratus |
| ISCCP_ST_UA | Satsim | 1 | xy | fraction of thin lower stratus |
| ISCCP_ST_UB | Satsim | 1 | xy | fraction of thick lower stratus |
| ISCCP_SUBV1 | Satsim | 1 | xy | fraction of subvisible cloud 0 180 hPa |
| ISCCP_SUBV2 | Satsim | 1 | xy | fraction of subvisible cloud 180 310 hPa |
| ISCCP_SUBV3 | Satsim | 1 | xy | fraction of subvisible cloud 310 440 hPa |
| ISCCP_SUBV4 | Satsim | 1 | xy | fraction of subvisible cloud 440 560 hPa |
| ISCCP_SUBV5 | Satsim | 1 | xy | fraction of subvisible cloud 560 680 hPa |
| ISCCP_SUBV6 | Satsim | 1 | xy | fraction of subvisible cloud 680 800 hPa |
| ISCCP_SUBV7 | Satsim | 1 | xy | fraction of subvisible cloud 800 SFC hPa |
| ISTSFC | Surface | C | xy | snow or ice surface temperature |
| ITY | Surface | 1 | xy | vegetation type |
| ITY | Landice | 1 | tile | vegetation type |
| ITY | Catch | 1 | tile | vegetation type |
| IWP | Moist | kg m-2 | xy | ice water path |
| KE | Agcm | J m-2 | xy | vertically integrated kinetic energy |
| KE | FVdycore | J m-2 | xy | vertically integrated kinetic energy |
| KE | DynCore | J m-2 | xy | vertically integrated kinetic energy |
| KE | ARIESg3 | J m-2 | xy | vertically integrated kinetic energy |
| KEADV | FVdycore | W m-2 | xy | vertically integrated kinetic energy tendency due to dynamics advection |
| KEADV | DynCore | W m-2 | xy | vertically integrated kinetic energy tendency due to dynamics advection |
| KEADV | ARIESg3 | W m-2 | xy | vertically integrated kinetic energy tendency due to dynamics advection |
| KEANA | FVdycore | W m-2 | xy | total kinetic energy tendency due to analysis |
| KEANA | DynCore | W m-2 | xy | total kinetic energy tendency due to analysis |
| KEANA | ARIESg3 | W m-2 | xy | total kinetic energy tendency due to analysis |
| KEBKG | Gwd | W m-2 | xy | vertically integrated kinetic energy dissipation due to gravity wave background |
| KECDCOR | FVdycore | W m-2 | xy | vertically integrated kinetic energy tendency due to cdcore |
| KECDCOR | DynCore | W m-2 | xy | vertically integrated kinetic energy tendency due to cdcore |
| KECDCOR | ARIESg3 | W m-2 | xy | vertically integrated kinetic energy tendency due to cdcore |
| KEDISS | Moist | W m-2 | xyz | kinetic energy diss in RAS |
| KEDP | FVdycore | W m-2 | xy | vertically integrated kinetic energy tendency due to pressure change |
| KEDP | DynCore | W m-2 | xy | vertically integrated kinetic energy tendency due to pressure change |
| KEDP | ARIESg3 | W m-2 | xy | vertically integrated kinetic energy tendency due to pressure change |
| KEDYN | FVdycore | W m-2 | xy | vertically integrated kinetic energy tendency due to dynamics |
| KEDYN | DynCore | W m-2 | xy | vertically integrated kinetic energy tendency due to dynamics |
| KEDYN | ARIESg3 | W m-2 | xy | vertically integrated kinetic energy tendency due to dynamics |
| KEGEN | FVdycore | W m-2 | xy | vertically integrated generation of kinetic energy |
| KEGEN | DynCore | W m-2 | xy | vertically integrated generation of kinetic energy |
| KEGEN | ARIESg3 | W m-2 | xy | vertically integrated generation of kinetic energy |
| KEGWD | Gwd | W m-2 | xy | vertically integrated kinetic energy tendency across gwd |
| KEHOT | FVdycore | W m-2 | xy | vertically integrated kinetic energy tendency due to HOT |
| KEHOT | DynCore | W m-2 | xy | vertically integrated kinetic energy tendency due to HOT |
| KEHOT | ARIESg3 | W m-2 | xy | vertically integrated kinetic energy tendency due to HOT |
| KEINT | Turbulence | W m-2 | xy | vertically integrated kinetic energy dissipation due to diffusion |
| KEMST | Moist | W m-2 | xy | vertically integrated kinetic energy tendency across moist |
| KEMST2 | Moist | W m-2 | xy | vertically integrated KE dissipation in RAS |
| KEORO | Gwd | W m-2 | xy | vertically integrated kinetic energy dissipation due to orographic gravity waves |
| KEPG | FVdycore | W m-2 | xy | vertically integrated kinetic energy tendency due to pressure gradient |
| KEPG | DynCore | W m-2 | xy | vertically integrated kinetic energy tendency due to pressure gradient |
| KEPG | ARIESg3 | W m-2 | xy | vertically integrated kinetic energy tendency due to pressure gradient |
| KEPHY | FVdycore | W m-2 | xy | vertically integrated kinetic energy tendency due to physics |
| KEPHY | DynCore | W m-2 | xy | vertically integrated kinetic energy tendency due to physics |
| KEPHY | ARIESg3 | W m-2 | xy | vertically integrated kinetic energy tendency due to physics |
| KEPHY | Physics | W m-2 | xy | vertically integrated kinetic energy tendency across physics |
| KERAD | Turbulence | m+2 s-1 | xy | turbulent entrainment diff from cooling |
| KERAY | Gwd | W m-2 | xy | vertically integrated kinetic energy dissipation due to Rayleigh friction |
| KEREMAP | FVdycore | W m-2 | xy | vertically integrated kinetic energy tendency due to remap |
| KEREMAP | DynCore | W m-2 | xy | vertically integrated kinetic energy tendency due to remap |
| KEREMAP | ARIESg3 | W m-2 | xy | vertically integrated kinetic energy tendency due to remap |
| KERES | Gwd | W m-2 | xy | vertically integrated kinetic energy residual for total energy conservation |
| KESRF | Turbulence | W m-2 | xy | vertically integrated kinetic energy dissipation due to surface friction |
| KETOP | Turbulence | W m-2 | xy | vertically integrated kinetic energy dissipation due to topographic friction |
| KETRB | Turbulence | W m-2 | xy | vertically integrated kinetic energy tendency across turbulence |
| KH | Turbulence | m+2 s-1 | xyz | total scalar diffusivity |
| KHLS | Turbulence | m+2 s-1 | xyz | scalar diffusivity from Louis |
| KHRAD | Turbulence | m+2 s-1 | xyz | radiation driven scalar diffusivity from Lock scheme |
| KHSFC | Turbulence | m+2 s-1 | xyz | surface driven scalar diffusivity from Lock scheme |
| KHX0 | Moist | m+2 s-1 | xyz | scalar diffusivity |
| KM | Turbulence | m+2 s-1 | xyz | total momentum diffusivity |
| KMLS | Turbulence | m+2 s-1 | xyz | momentum diffusivity from Louis |
| KPAR | Ogcm | m-1 | tile | PAR extinction coefficient |
| KPAR | Orad | m-1 | xy | PAR extinction coefficient |
| LAI | Surface | 1 | xy | leaf area index |
| LAI | Vegdyn | 1 | tile | leaf area index |
| LAS | Irrad | W m-2 | xy | surface absorbed longwave radiation assuming clear sky and no aerosol |
| LCS | Irrad | W m-2 | xy | surface absorbed longwave radiation assuming clear sky |
| LHFX | Surface | W m-2 | xy | total latent energy flux |
| LHLAND | Surface | W m-2 | xy | Latent heat flux land |
| LHLAND | Catch | W m-2 | tile | Latent heat flux land |
| LHOBS | DatmoDyn | W m-2 | xy | Obs. latent heat flux (surface) |
| LIDARPMOL | Satsim | m-1 sr-1 | xyz | molecular attenuated backscatter lidar signal power |
| LIDARPTOT | Satsim | m-1 sr-1 | xyz | total attenuated backscatter lidar signal power |
| LIDARTAUTOT | Satsim | 1 | xyz | optical thickess integrated from top to level z |
| LST | Surface | K | xy | land surface skin temperature |
| LST | Landice | K | tile | land surface skin temperature |
| LST | Catch | K | tile | land surface skin temperature |
| LS_ARF | Moist | 1 | xy | areal fraction of nonanvil large scale showers |
| LS_PRCP | Moist | kg m-2 s-1 | xy | nonanvil large scale precipitation |
| LWCRT | Turbulence | K s-1 | xyz | cloudy LW radiation tendency used by Lock scheme |
| LWI | Gcm | |||
| LWI | Agcm | m+2 | xy | isotropic variance of filtered topography |
| LWI | Physics | kg m-2 s-1 | xy | vertically integrated odd oxygen tendency due to physics |
| LWI | Surface | 1 | xy | land(1) water(0) ice(2) flag |
| LWLAND | Surface | W m-2 | xy | Net longwave land |
| LWLAND | Catch | W m-2 | tile | Net longwave land |
| LWNDICE | Surface | W m-2 | xy | sea ice net downward longwave flux |
| LWNDICE | Saltwater | W m-2 | tile | sea ice net downward longwave flux |
| LWNDSRF | Surface | W m-2 | xy | surface net downward longwave flux |
| LWNDSRF | Lake | W m-2 | tile | surface net downward longwave flux |
| LWNDSRF | Landice | W m-2 | tile | surface net downward longwave flux |
| LWNDSRF | Catch | W m-2 | tile | surface net downward longwave flux |
| LWNDSRF | Saltwater | W m-2 | tile | surface net downward longwave flux |
| LWNDWTR | Surface | W m-2 | xy | open water net downward longwave flux |
| LWNDWTR | Saltwater | W m-2 | tile | open water net downward longwave flux |
| LWP | Moist | kg m-2 | xy | liquid water path |
| LWS | Radiation | W m-2 K-1 | xy | linearization of surface upwelling longwave flux |
| LWS | Irrad | W m-2 | xy | surface absorbed longwave radiation |
| MASS | Agcm | kg m-2 | xy | atmospheric mass |
| MCFFLX | StratChem | kgs | xy | derived CH3CCl3 surface flux |
| MCOSZ | Solar | 1 | xy | mean cosine of the solar zenith angle |
| MDSCLDFRCH2O | Satsim | 1 | xy | modis cloud fraction water mean |
| MDSCLDFRCHI | Satsim | 1 | xy | modis cloud fraction high mean |
| MDSCLDFRCICE | Satsim | 1 | xy | modis cloud fraction ice mean |
| MDSCLDFRCLO | Satsim | 1 | xy | modis cloud fraction low mean |
| MDSCLDFRCMID | Satsim | 1 | xy | modis cloud fraction mid mean |
| MDSCLDFRCTTL | Satsim | 1 | xy | modis cloud fraction total mean |
| MDSCLDFRCWTR | Satsim | 1 | xy | modis cloud fraction water mean |
| MDSCLDSZH20 | Satsim | 1 | xy | modis cloud particle size water mean |
| MDSCLDSZICE | Satsim | 1 | xy | modis cloud particle size ice mean |
| MDSCLDSZWTR | Satsim | 1 | xy | modis cloud particle size water mean |
| MDSCLDTOPPS | Satsim | 1 | xy | modis cloud top pressure total mean |
| MDSH2OPATH | Satsim | 1 | xy | modis liquid water path mean |
| MDSICEPATH | Satsim | 1 | xy | modis ice water path mean |
| MDSOPTHCKH2O | Satsim | 1 | xy | modis optical thickness water mean |
| MDSOPTHCKH2OLG | Satsim | 1 | xy | modis optical thickness water logmean |
| MDSOPTHCKICE | Satsim | 1 | xy | modis optical thickness ice mean |
| MDSOPTHCKICELG | Satsim | 1 | xy | modis optical thickness ice logmean |
| MDSOPTHCKTTL | Satsim | 1 | xy | modis optical thickness total mean |
| MDSOPTHCKTTLLG | Satsim | 1 | xy | modis optical thickness total logmean |
| MDSOPTHCKWTR | Satsim | 1 | xy | modis optical thickness water mean |
| MDSOPTHCKWTRLG | Satsim | 1 | xy | modis optical thickness water logmean |
| MDSTAUPRSHIST11 | Satsim | 1 | xy | modis tau pressure histogram bin 1 1 |
| MDSTAUPRSHIST12 | Satsim | 1 | xy | modis tau pressure histogram bin 1 2 |
| MDSTAUPRSHIST13 | Satsim | 1 | xy | modis tau pressure histogram bin 1 3 |
| MDSTAUPRSHIST14 | Satsim | 1 | xy | modis tau pressure histogram bin 1 4 |
| MDSTAUPRSHIST15 | Satsim | 1 | xy | modis tau pressure histogram bin 1 5 |
| MDSTAUPRSHIST16 | Satsim | 1 | xy | modis tau pressure histogram bin 1 6 |
| MDSTAUPRSHIST17 | Satsim | 1 | xy | modis tau pressure histogram bin 1 7 |
| MDSTAUPRSHIST21 | Satsim | 1 | xy | modis tau pressure histogram bin 2 1 |
| MDSTAUPRSHIST22 | Satsim | 1 | xy | modis tau pressure histogram bin 2 2 |
| MDSTAUPRSHIST23 | Satsim | 1 | xy | modis tau pressure histogram bin 2 3 |
| MDSTAUPRSHIST24 | Satsim | 1 | xy | modis tau pressure histogram bin 2 4 |
| MDSTAUPRSHIST25 | Satsim | 1 | xy | modis tau pressure histogram bin 2 5 |
| MDSTAUPRSHIST26 | Satsim | 1 | xy | modis tau pressure histogram bin 2 6 |
| MDSTAUPRSHIST27 | Satsim | 1 | xy | modis tau pressure histogram bin 2 7 |
| MDSTAUPRSHIST31 | Satsim | 1 | xy | modis tau pressure histogram bin 3 1 |
| MDSTAUPRSHIST32 | Satsim | 1 | xy | modis tau pressure histogram bin 3 2 |
| MDSTAUPRSHIST33 | Satsim | 1 | xy | modis tau pressure histogram bin 3 3 |
| MDSTAUPRSHIST34 | Satsim | 1 | xy | modis tau pressure histogram bin 3 4 |
| MDSTAUPRSHIST35 | Satsim | 1 | xy | modis tau pressure histogram bin 3 5 |
| MDSTAUPRSHIST36 | Satsim | 1 | xy | modis tau pressure histogram bin 3 6 |
| MDSTAUPRSHIST37 | Satsim | 1 | xy | modis tau pressure histogram bin 3 7 |
| MDSTAUPRSHIST41 | Satsim | 1 | xy | modis tau pressure histogram bin 4 1 |
| MDSTAUPRSHIST42 | Satsim | 1 | xy | modis tau pressure histogram bin 4 2 |
| MDSTAUPRSHIST43 | Satsim | 1 | xy | modis tau pressure histogram bin 4 3 |
| MDSTAUPRSHIST44 | Satsim | 1 | xy | modis tau pressure histogram bin 4 4 |
| MDSTAUPRSHIST45 | Satsim | 1 | xy | modis tau pressure histogram bin 4 5 |
| MDSTAUPRSHIST46 | Satsim | 1 | xy | modis tau pressure histogram bin 4 6 |
| MDSTAUPRSHIST47 | Satsim | 1 | xy | modis tau pressure histogram bin 4 7 |
| MDSTAUPRSHIST51 | Satsim | 1 | xy | modis tau pressure histogram bin 5 1 |
| MDSTAUPRSHIST52 | Satsim | 1 | xy | modis tau pressure histogram bin 5 2 |
| MDSTAUPRSHIST53 | Satsim | 1 | xy | modis tau pressure histogram bin 5 3 |
| MDSTAUPRSHIST54 | Satsim | 1 | xy | modis tau pressure histogram bin 5 4 |
| MDSTAUPRSHIST55 | Satsim | 1 | xy | modis tau pressure histogram bin 5 5 |
| MDSTAUPRSHIST56 | Satsim | 1 | xy | modis tau pressure histogram bin 5 6 |
| MDSTAUPRSHIST57 | Satsim | 1 | xy | modis tau pressure histogram bin 5 7 |
| MDSTAUPRSHIST61 | Satsim | 1 | xy | modis tau pressure histogram bin 6 1 |
| MDSTAUPRSHIST62 | Satsim | 1 | xy | modis tau pressure histogram bin 6 2 |
| MDSTAUPRSHIST63 | Satsim | 1 | xy | modis tau pressure histogram bin 6 3 |
| MDSTAUPRSHIST64 | Satsim | 1 | xy | modis tau pressure histogram bin 6 4 |
| MDSTAUPRSHIST65 | Satsim | 1 | xy | modis tau pressure histogram bin 6 5 |
| MDSTAUPRSHIST66 | Satsim | 1 | xy | modis tau pressure histogram bin 6 6 |
| MDSTAUPRSHIST67 | Satsim | 1 | xy | modis tau pressure histogram bin 6 7 |
| MDSTAUPRSHIST71 | Satsim | 1 | xy | modis tau pressure histogram bin 7 1 |
| MDSTAUPRSHIST72 | Satsim | 1 | xy | modis tau pressure histogram bin 7 2 |
| MDSTAUPRSHIST73 | Satsim | 1 | xy | modis tau pressure histogram bin 7 3 |
| MDSTAUPRSHIST74 | Satsim | 1 | xy | modis tau pressure histogram bin 7 4 |
| MDSTAUPRSHIST75 | Satsim | 1 | xy | modis tau pressure histogram bin 7 5 |
| MDSTAUPRSHIST76 | Satsim | 1 | xy | modis tau pressure histogram bin 7 6 |
| MDSTAUPRSHIST77 | Satsim | 1 | xy | modis tau pressure histogram bin 7 7 |
| MDSWTRPATH | Satsim | 1 | xy | modis liquid water path mean |
| MELTB | Surface | m s-1 | xy | basal ice melt |
| MELTL | Surface | m s-1 | xy | lateral ice melt |
| MELTS | Surface | m s-1 | xy | snow melt |
| MELTT | Surface | m s-1 | xy | top ice melt |
| MFX | FVdycore | Pa m+2 s-1 | xyz | pressure weighted eastward wind |
| MFX | DynCore | Pa m+2 s-1 | xyz | pressure weighted eastward wind |
| MFX | ARIESg3 | Pa m+2 s-1 | xyz | pressure weighted eastward wind |
| MFX_A | FVdycore | Pa m+2 s-1 | xyz | zonal mass flux |
| MFX_A | DynCore | Pa m+2 s-1 | xyz | zonal mass flux |
| MFX_A | ARIESg3 | Pa m+2 s-1 | xyz | zonal mass flux |
| MFX_UR | FVdycore | Pa m+2 s-1 | xyz | pressure weighted eastward wind unremapped |
| MFX_UR | DynCore | Pa m+2 s-1 | xyz | pressure weighted eastward wind unremapped |
| MFX_UR | ARIESg3 | Pa m+2 s-1 | xyz | pressure weighted eastward wind unremapped |
| MFY | FVdycore | Pa m+2 s-1 | xyz | pressure weighted northward wind |
| MFY | DynCore | Pa m+2 s-1 | xyz | pressure weighted northward wind |
| MFY | ARIESg3 | Pa m+2 s-1 | xyz | pressure weighted northward wind |
| MFY_A | FVdycore | Pa m+2 s-1 | xyz | meridional mass flux |
| MFY_A | DynCore | Pa m+2 s-1 | xyz | meridional mass flux |
| MFY_A | ARIESg3 | Pa m+2 s-1 | xyz | meridional mass flux |
| MFY_UR | FVdycore | Pa m+2 s-1 | xyz | pressure weighted northward wind unremapped |
| MFY_UR | DynCore | Pa m+2 s-1 | xyz | pressure weighted northward wind unremapped |
| MFY_UR | ARIESg3 | Pa m+2 s-1 | xyz | pressure weighted northward wind unremapped |
| MFZ | FVdycore | kg m-2 s-1 | xyz | vertical mass flux |
| MFZ | DynCore | kg m-2 s-1 | xyz | vertical mass flux |
| MFZ | ARIESg3 | kg m-2 s-1 | xyz | vertical mass flux |
| MISRCLDAREA | Satsim | 1 | xy | MISR cloud area |
| MISRFQ0 | Satsim | 1 | xy | MISR cloud area |
| MISRFQ10000 | Satsim | 1 | xy | MISR layer top |
| MISRFQ12000 | Satsim | 1 | xy | MISR layer top |
| MISRFQ1250 | Satsim | 1 | xy | MISR cloud area |
| MISRFQ14000 | Satsim | 1 | xy | MISR layer top |
| MISRFQ16000 | Satsim | 1 | xy | MISR layer top |
| MISRFQ1750 | Satsim | 1 | xy | MISR cloud area |
| MISRFQ18000 | Satsim | 1 | xy | MISR layer top |
| MISRFQ2250 | Satsim | 1 | xy | MISR cloud area |
| MISRFQ250 | Satsim | 1 | xy | MISR cloud area |
| MISRFQ2750 | Satsim | 1 | xy | MISR cloud area |
| MISRFQ3500 | Satsim | 1 | xy | MISR layer top |
| MISRFQ4500 | Satsim | 1 | xy | MISR layer top |
| MISRFQ6000 | Satsim | 1 | xy | MISR layer top |
| MISRFQ750 | Satsim | 1 | xy | MISR cloud area |
| MISRFQ8000 | Satsim | 1 | xy | MISR layer top |
| MISRLYRTP0 | Satsim | 1 | xy | MISR layer top |
| MISRLYRTP10000 | Satsim | 1 | xy | MISR layer top |
| MISRLYRTP12000 | Satsim | 1 | xy | MISR layer top |
| MISRLYRTP1250 | Satsim | 1 | xy | MISR layer top |
| MISRLYRTP14000 | Satsim | 1 | xy | MISR layer top |
| MISRLYRTP16000 | Satsim | 1 | xy | MISR layer top |
| MISRLYRTP1750 | Satsim | 1 | xy | MISR layer top |
| MISRLYRTP18000 | Satsim | 1 | xy | MISR layer top |
| MISRLYRTP2250 | Satsim | 1 | xy | MISR layer top |
| MISRLYRTP250 | Satsim | 1 | xy | MISR layer top |
| MISRLYRTP2750 | Satsim | 1 | xy | MISR layer top |
| MISRLYRTP3500 | Satsim | 1 | xy | MISR layer top |
| MISRLYRTP4500 | Satsim | 1 | xy | MISR layer top |
| MISRLYRTP6000 | Satsim | 1 | xy | MISR layer top |
| MISRLYRTP750 | Satsim | 1 | xy | MISR layer top |
| MISRLYRTP8000 | Satsim | 1 | xy | MISR layer top |
| MISRMNCLDTP | Satsim | m | xy | MISR mead cloud top height |
| MLD | Gcm | |||
| MLD | Ogcm | N m-2 | tile | northward stress at base of ice |
| MOM_3D_MASK | Gcm | |||
| MOM_3D_MASK | Ogcm | N m-2 | tile | northward stress at base of ice |
| MOQ10M | Lake | kg kg-1 | tile | humidity 10m wind from MO sfc |
| MOQ10M | Landice | kg kg-1 | tile | humidity 10m wind from MO sfc |
| MOQ10M | Catch | kg kg-1 | tile | humidity 10m wind from MO sfc |
| MOQ10M | Saltwater | kg kg-1 | tile | humidity 10m wind from MO sfc |
| MOQ2M | Lake | kg kg-1 | tile | humidity 2m wind from MO sfc |
| MOQ2M | Landice | kg kg-1 | tile | humidity 2m wind from MO sfc |
| MOQ2M | Catch | kg kg-1 | tile | humidity 2m wind from MO sfc |
| MOQ2M | Saltwater | kg kg-1 | tile | humidity 2m wind from MO sfc |
| MOT10M | Lake | K | tile | temperature 10m wind from MO sfc |
| MOT10M | Landice | K | tile | temperature 10m wind from MO sfc |
| MOT10M | Catch | K | tile | temperature 10m wind from MO sfc |
| MOT10M | Saltwater | K | tile | temperature 10m wind from MO sfc |
| MOT2M | Lake | K | tile | temperature 2m wind from MO sfc |
| MOT2M | Landice | K | tile | temperature 2m wind from MO sfc |
| MOT2M | Catch | K | tile | temperature 2m wind from MO sfc |
| MOT2M | Saltwater | K | tile | temperature 2m wind from MO sfc |
| MOU10M | Lake | m s-1 | tile | zonal 10m wind from MO sfc |
| MOU10M | Landice | m s-1 | tile | zonal 10m wind from MO sfc |
| MOU10M | Catch | m s-1 | tile | zonal 10m wind from MO sfc |
| MOU10M | Saltwater | m s-1 | tile | zonal 10m wind from MO sfc |
| MOU2M | Lake | m s-1 | tile | zonal 2m wind from MO sfc |
| MOU2M | Landice | m s-1 | tile | zonal 2m wind from MO sfc |
| MOU2M | Catch | m s-1 | tile | zonal 2m wind from MO sfc |
| MOU2M | Saltwater | m s-1 | tile | zonal 2m wind from MO sfc |
| MOU50M | Lake | m s-1 | tile | zonal 50m wind from MO sfc |
| MOU50M | Landice | m s-1 | tile | zonal 50m wind from MO sfc |
| MOU50M | Catch | m s-1 | tile | zonal 50m wind from MO sfc |
| MOU50M | Saltwater | m s-1 | tile | zonal 50m wind from MO sfc |
| MOV10M | Lake | m s-1 | tile | meridional 10m wind from MO sfc |
| MOV10M | Landice | m s-1 | tile | meridional 10m wind from MO sfc |
| MOV10M | Catch | m s-1 | tile | meridional 10m wind from MO sfc |
| MOV10M | Saltwater | m s-1 | tile | meridional 10m wind from MO sfc |
| MOV2M | Lake | m s-1 | tile | meridional 2m wind from MO sfc |
| MOV2M | Landice | m s-1 | tile | meridional 2m wind from MO sfc |
| MOV2M | Catch | m s-1 | tile | meridional 2m wind from MO sfc |
| MOV2M | Saltwater | m s-1 | tile | meridional 2m wind from MO sfc |
| MOV50M | Lake | m s-1 | tile | meridional 50m wind from MO sfc |
| MOV50M | Landice | m s-1 | tile | meridional 50m wind from MO sfc |
| MOV50M | Catch | m s-1 | tile | meridional 50m wind from MO sfc |
| MOV50M | Saltwater | m s-1 | tile | meridional 50m wind from MO sfc |
| MTRI | Moist | X s-1 | xyz | tracer tendencies due to moist |
| MXDIAM | Moist | m | xy | diameter of largest RAS plume |
| N2OFLX | StratChem | kgs | xy | derived N2O surface flux |
| N2O_LOSS | PChem | mol mol-1 s-1 | xyz | tendency of nitrous oxide volume mixing ratio due to loss |
| N2O_PROD | PChem | mol mol-1 s-1 | xyz | tendency of nitrous oxide volume mixing ratio due to production |
| NATSAD | StratChem | m^{-1} | xyz | surface area density nitric acid trihydrate PSC |
| NCN_PRCP | ChemEnv | kg m-2 s-1 | xy | Non-convective precipitation |
| NITY | Surface | 1 | xy | NCEP vegetation type |
| O3 | GMIchem | kgkg | xyz | ozone mass mixing ratio |
| O3 | StratChem | kgkg | xyz | ozone mass mixing ratio |
| O3 | PChem | kg kg-1 | xyz | ozone mass mixing ratio |
| O3 | O3 | kg kg-1 | xyz | Ozone from GOCART |
| O3CM001 | O3 | Dobsons | xy | Total ozone Bin 001 |
| O3CM002 | O3 | Dobsons | xy | Total ozone Bin 002 |
| O3PPMV | Gcm | |||
| O3PPMV | Agcm | m+2 | xy | isotropic variance of filtered topography |
| O3PPMV | Physics | kg m-2 s-1 | xy | vertically integrated odd oxygen tendency due to physics |
| O3PPMV | GMIchem | ppmv | xyz | ozone volume mixing ratio in ppm |
| O3PPMV | StratChem | ppmv | xyz | ozone volume mixing ratio |
| O3PPMV | PChem | ppmv | xyz | ozone volume mixing ratio |
| O3PPMV | O3 | 1e-6 | xyz | Ozone from GOCART |
| OC | PChem | kg kg-1 | xyz | organic carbon aerosol mixing ratio |
| OCANA | GAAS | kgkg | xyz | Organic Carbon Mixing Ratio Analysis |
| OCANGSTR | OC | 1 | xy | Organic Carbon Angstrom parameter [470-870 nm] ENSEMBLE |
| OCCMASS | OC | kg m-2 | xy | Organic Carbon Column Mass Density ENSEMBLE |
| OCCONC | OC | kg m-3 | xyz | Organic Carbon Mass Concentration ENSEMBLE |
| OCDP001 | OC | kg m-2 s-1 | xy | Organic Carbon Dry Deposition Bin 001 ENSEMBLE |
| OCDP002 | OC | kg m-2 s-1 | xy | Organic Carbon Dry Deposition Bin 002 ENSEMBLE |
| OCEM001 | OC | kg m-2 s-1 | xy | Organic Carbon Emission Bin 001 ENSEMBLE |
| OCEM002 | OC | kg m-2 s-1 | xy | Organic Carbon Emission Bin 002 ENSEMBLE |
| OCEMAN | OC | kg m-2 s-1 | xy | Organic Carbon Anthropogenic Emissions ENSEMBLE |
| OCEMBB | OC | kg m-2 s-1 | xy | Organic Carbon Biomass Burning Emissions ENSEMBLE |
| OCEMBF | OC | kg m-2 s-1 | xy | Organic Carbon Biofuel Emissions ENSEMBLE |
| OCEMBG | OC | kg m-2 s-1 | xy | Organic Carbon Biogenic Emissions ENSEMBLE |
| OCEXTCOEF | OC | m-1 | xyz | Organic Carbon Ext. Coefficient [550 nm] ENSEMBLE |
| OCEXTTAU | OC | 1 | xy | Organic Carbon Extinction AOT [550 nm] ENSEMBLE |
| OCFLUXU | OC | kg m-1 s-1 | xy | Organic Carbon column u-wind mass flux ENSEMBLE |
| OCFLUXV | OC | kg m-1 s-1 | xy | Organic Carbon column v-wind mass flux ENSEMBLE |
| OCHYGRO | GMIchem | 1 | xyz | Hygroscopic growth of organic carbon |
| OCHYPHIL | OC | kg m-2 s-1 | xy | Organic Carbon Hydrophobic to Hydrophilic ENSEMBLE |
| OCINC | GAAS | kgkg | xyz | Organic Carbon Mixing Ratio Analysis Increments |
| OCMASS | OC | kg kg-1 | xyz | Organic Carbon Mass Mixing Ratio ENSEMBLE |
| OCOD | GMIchem | 1 | xyz | Organic carbon optical depth (400 nm) |
| OCSA | GMIchem | cm2cm3 | xyz | Organic carbon surface area |
| OCSCACOEF | OC | m-1 | xyz | Organic Carbon Scatt. Coefficient [550 nm] ENSEMBLE |
| OCSCATAU | OC | 1 | xy | Organic Carbon Scattering AOT [550 nm] ENSEMBLE |
| OCSMASS | OC | kg m-3 | xy | Organic Carbon Surface Mass Concentration ENSEMBLE |
| OCWT001 | OC | kg m-2 s-1 | xy | Organic Carbon Wet Deposition Bin 001 ENSEMBLE |
| OCWT002 | OC | kg m-2 s-1 | xy | Organic Carbon Wet Deposition Bin 002 ENSEMBLE |
| OLA | Irrad | W m-2 | xy | upwelling longwave flux at toa assuming clear sky and no aerosol |
| OLC | Irrad | W m-2 | xy | upwelling longwave flux at toa assuming clear sky |
| OLR | Irrad | W m-2 | xy | upwelling longwave flux at toa |
| OMEGA | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| OMEGA | FVdycore | Pa s-1 | xyz | vertical pressure velocity |
| OMEGA | DynCore | Pa sec-1 | xyz | vertical pressure velocity |
| OMEGA | ARIESg3 | Pa sec-1 | xyz | vertical pressure velocity |
| OMEGA | DatmoDyn | Pas | xyz | pressure velocity |
| OMEGA10 | DynCore | Pa s-1 | xy | omega at 10 hPa |
| OMEGA200 | DynCore | Pa s-1 | xy | omega at 200 hPa |
| OMEGA500 | FVdycore | Pa s-1 | xy | omega at 500 hPa |
| OMEGA500 | DynCore | Pa s-1 | xy | omega at 500 hPa |
| OMEGA500 | ARIESg3 | Pa s-1 | xy | omega at 500 hPa |
| OMEGA850 | DynCore | Pa s-1 | xy | omega at 850 hPa |
| OSR | Solar | W m-2 | xy | toa outgoing shortwave flux |
| OSRCLR | Solar | W m-2 | xy | toa outgoing shortwave flux assuming clear sky |
| OSRCNA | Solar | W m-2 | xy | toa outgoing shortwave flux no aerosol clear sky |
| OSRNA | Solar | W m-2 | xy | toa outgoing shortwave flux no aerosol |
| OUSTAR3 | Lake | m+3 s-3 | tile | ocean ustar cubed |
| OUSTAR3 | Saltwater | m+3 s-3 | tile | ocean ustar cubed |
| OX | GMIchem | molmol | xyz | ozone volume mixing ratio |
| OXFILL | Agcm | kg m-2 s-1 | xy | vertically integrated ox adjustment from filling |
| OXIM | Physics | kg kg-1 s-1 | xyz | tendency of odd oxygen due to moist processes |
| OXIT | Physics | kg kg-1 s-1 | xyz | tendency of odd oxygen due to turbulence |
| OX_LOSS | PChem | mol mol-1 s-1 | xyz | tendency of odd oxygen volume mixing ratio due to loss |
| OX_PROD | PChem | mol mol-1 s-1 | xyz | tendency of odd oxygen volume mixing ratio due to production |
| OX_TEND | GMIchem | kg kg-1 s-1 | xyz | tendency of odd oxygen mixing ratio due to chemistry |
| OX_TEND | StratChem | kg kg-1 s-1 | xyz | tendency of odd oxygen mixing ratio due to chemistry |
| OX_TEND | PChem | mol mol-1 s-1 | xyz | tendency of odd oxygen mixing ratio due to chemistry |
| PARASOLREFL0 | Satsim | 1 | xy | parasol reflectance |
| PARASOLREFL1 | Satsim | 1 | xy | parasol reflectance 1 |
| PARASOLREFL2 | Satsim | 1 | xy | parasol reflectance 2 |
| PARASOLREFL3 | Satsim | 1 | xy | parasol reflectance 3 |
| PARASOLREFL4 | Satsim | 1 | xy | parasol reflectance 4 |
| PARASOLREFL5 | Satsim | 1 | xy | parasol reflectance 5 |
| PCPOBS | DatmoDyn | mmd | xy | Obs. precipitation rate |
| PCU | Moist | kg m-2 s-1 | xy | convective rainfall |
| PCU | Surface | kg m-2 s-1 | xy | liquid water convective precipitation |
| PDFIZ | Moist | kg m-2 s-1 | xy | statistical source of cloud ice |
| PDFLZ | Moist | kg m-2 s-1 | xy | statistical source of cloud water |
| PEANA | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| PEANA | FVdycore | W m-2 | xy | total potential energy tendency due to analysis |
| PEANA | DynCore | W m-2 | xy | total potential energy tendency due to analysis |
| PEANA | ARIESg3 | W m-2 | xy | total potential energy tendency due to analysis |
| PEANA | DatmoDyn | W m-2 | xy | total potential energy tendency due to analysis |
| PEBKG | Gwd | W m-2 | xy | vertically integrated potential energy tendency due to gravity wave background |
| PECDCOR | FVdycore | W m-2 | xy | vertically integrated potential energy tendency due to cdcore |
| PECDCOR | DynCore | W m-2 | xy | vertically integrated potential energy tendency due to cdcore |
| PECDCOR | ARIESg3 | W m-2 | xy | vertically integrated potential energy tendency due to cdcore |
| PECUF | Physics | W m-2 | xy | vertically integrated potential energy tendency due to cumulus friction |
| PEDYN | FVdycore | W m-2 | xy | vertically integrated potential energy tendency due to dynamics |
| PEDYN | DynCore | W m-2 | xy | vertically integrated potential energy tendency due to dynamics |
| PEDYN | ARIESg3 | W m-2 | xy | vertically integrated potential energy tendency due to dynamics |
| PEFILL | Agcm | W m-2 | xy | vertically integrated cpt adjustment from filling |
| PEFRI | Physics | W m-2 | xy | vertically integrated potential energy tendency due to friction |
| PEGWD | Physics | W m-2 | xy | vertically integrated potential energy tendency across gwd |
| PEGWD | Gwd | W m-2 | xy | vertically integrated potential energy tendency across gwd |
| PEMST | Physics | W m-2 | xy | vertically integrated potential energy tendency across moist |
| PENPAF | Lake | W m-2 | tile | downwelling par diffuse flux at skin base |
| PENPAF | Saltwater | W m-2 | tile | downwelling par diffuse flux at skin base |
| PENPAF | Orad | W m-2 | xy | net downward penetrating diffuse PAR flux |
| PENPAR | Lake | W m-2 | tile | downwelling par direct flux at skin base |
| PENPAR | Saltwater | W m-2 | tile | downwelling par direct flux at skin base |
| PENPAR | Orad | W m-2 | xy | net downward penetrating direct PAR flux |
| PENUVF | Lake | W m-2 | tile | downwelling uvr diffuse flux at skin base |
| PENUVF | Saltwater | W m-2 | tile | downwelling uvr diffuse flux at skin base |
| PENUVF | Orad | W m-2 | xy | net downward penetrating diffuse UV flux |
| PENUVR | Lake | W m-2 | tile | downwelling uvr direct flux at skin base |
| PENUVR | Saltwater | W m-2 | tile | downwelling uvr direct flux at skin base |
| PENUVR | Orad | W m-2 | xy | net downward penetrating direct UV flux |
| PEORO | Gwd | W m-2 | xy | vertically integrated potential energy tendency due to orographic gravity waves |
| PEPHY | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| PEPHY | FVdycore | W m-2 | xy | total potential energy tendency due to physics |
| PEPHY | DynCore | W m-2 | xy | total potential energy tendency due to physics |
| PEPHY | ARIESg3 | W m-2 | xy | total potential energy tendency due to physics |
| PEPHY | DatmoDyn | W m-2 | xy | total potential energy tendency due to physics |
| PEPHY | Physics | W m-2 | xy | vertically integrated potential energy tendency across physics |
| PERAD | Physics | W m-2 | xy | vertically integrated potential energy tendency across radiation |
| PERAY | Gwd | W m-2 | xy | vertically integrated potential energy tendency due to Rayleigh friction |
| PEREMAP | FVdycore | W m-2 | xy | vertically integrated potential energy tendency due to remap |
| PEREMAP | DynCore | W m-2 | xy | vertically integrated potential energy tendency due to remap |
| PEREMAP | ARIESg3 | W m-2 | xy | vertically integrated potential energy tendency due to remap |
| PERES | Agcm | W m-2 | xy | vertically integrated cpt tendency residual |
| PETRB | Physics | W m-2 | xy | vertically integrated potential energy tendency across turbulence |
| PFI_AN | Moist | kg m-2 s-1 | xyz | 3D flux of ice anvil precipitation |
| PFI_CN | Moist | kg m-2 s-1 | xyz | 3D flux of ice convective precipitation |
| PFI_LS | Moist | kg m-2 s-1 | xyz | 3D flux of ice nonanvil large scale precipitation |
| PFI_LSAN | Moist | kg m-2 s-1 | xyz | 3D flux of ice nonconvective precipitation |
| PFL_AN | Moist | kg m-2 s-1 | xyz | 3D flux of liquid anvil precipitation |
| PFL_CN | Moist | kg m-2 s-1 | xyz | 3D flux of liquid convective precipitation |
| PFL_LS | Moist | kg m-2 s-1 | xyz | 3D flux of liquid nonanvil large scale precipitation |
| PFL_LSAN | Moist | kg m-2 s-1 | xyz | 3D flux of liquid nonconvective precipitation |
| PGENTOT | Moist | kg m-2 s-1 | xy | Total column production of precipitation |
| PHIS | Gcm | |||
| PHIS | Agcm | m+2 s-2 | xy | surface geopotential height |
| PHIS | DatmoDyn | K | xy | obs skin temperature |
| PL | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| PL | FVdycore | Pa | xyz | mid level pressure |
| PL | DynCore | Pa | xyz | mid level pressure |
| PL | ARIESg3 | Pa | xyz | mid level pressure |
| PL | DatmoDyn | Pa | xyz | midlevel pressures |
| PLE | Agcm | m+2 | xy | isotropic variance of filtered topography |
| PLE | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| PLE | FVdycore | Pa | xyz | edge pressure |
| PLE | DynCore | Pa | xyz | edge pressure |
| PLE | ARIESg3 | Pa | xyz | edge pressure |
| PLE | DatmoDyn | Pascals | xyz | Pressure at the edges |
| PLE | Gwd | Pa | xyz | air pressure |
| PLK | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| PLK | FVdycore | Pa^kappa | xyz | mid-layer p^kappa |
| PLK | DynCore | Pa^kappa | xyz | mid-layer p^kappa |
| PLK | ARIESg3 | Pa^kappa | xyz | mid-layer p^kappa |
| PLK | DatmoDyn | J kg-1 | xyz | Exner quantity |
| PLS | Moist | kg m-2 s-1 | xy | large scale rainfall |
| PLS | Surface | kg m-2 s-1 | xy | liquid water large scale precipitation |
| PMSA | SU | kg m-2 s-1 | xyz | MSA Prod from DMS oxidation |
| PPBL | Turbulence | Pa | xy | pbltop pressure |
| PREF | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| PREF | FVdycore | Pa | z | reference air pressure |
| PREF | DynCore | Pa | z | reference air pressure |
| PREF | ARIESg3 | Pa | z | reference air pressure |
| PREF | Gwd | Pa | z | reference air pressure |
| PREVTOT | Moist | kg m-2 s-1 | xy | Total column re-evapsubl of precipitation |
| PS | Gcm | |||
| PS | Agcm | m+2 | xy | isotropic variance of filtered topography |
| PS | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| PS | FVdycore | Pa | xy | surface pressure |
| PS | DynCore | Pa | xy | surface pressure |
| PS | ARIESg3 | Pa | xy | surface pressure |
| PS | DatmoDyn | Pa | xy | Surface Pressure |
| PS | Lake | Pa | tile | surface pressure |
| PS | Saltwater | Pa | tile | surface pressure |
| PSFCOBS | DatmoDyn | [PahPa] | xy | Obs. Sfc. Pressure |
| PSI | Gcm | |||
| PSI | Ogcm | N m-2 | tile | northward stress at base of ice |
| PSO2 | SU | kg m-2 s-1 | xyz | SO2 Prod from DMS oxidation |
| PSO4AQ | SU | kg m-2 s-1 | xyz | SO4 Prod from aqueous SO2 oxidation |
| PSO4G | SU | kg m-2 s-1 | xyz | SO4 Prod from SO2 oxidation |
| PSO4WET | SU | kg m-2 s-1 | xyz | SO4 Prod from wet SO2 oxidation |
| PTFX | FVdycore | K Pa m+2 s-1 | xyz | pressure weighted eastward potential temperature flux unremapped |
| PTFX | DynCore | K Pa m+2 s-1 | xyz | pressure weighted eastward potential temperature flux unremapped |
| PTFX | ARIESg3 | K Pa m+2 s-1 | xyz | pressure weighted eastward potential temperature flux unremapped |
| PTFY | FVdycore | K Pa m+2 s-1 | xyz | pressure weighted northward potential temperature flux unremapped |
| PTFY | DynCore | K Pa m+2 s-1 | xyz | pressure weighted northward potential temperature flux unremapped |
| PTFY | ARIESg3 | K Pa m+2 s-1 | xyz | pressure weighted northward potential temperature flux unremapped |
| PV | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| PV | FVdycore | m+2 kg-1 s-1 | xyz | ertels isentropic potential vorticity |
| PV | DynCore | m+2 kg-1 sec-1 | xyz | ertels isentropic potential vorticity |
| PV | ARIESg3 | m+2 kg-1 sec-1 | xyz | ertels isentropic potential vorticity |
| PV | DatmoDyn | m+2 kg-1 sec-1 | xyz | ertels isentropic potential vorticity |
| Q | Gcm | |||
| Q | Agcm | m+2 | xy | isotropic variance of filtered topography |
| Q | FVdycore | kg kg-1 | xyz | specific humidity |
| Q | DynCore | 1 | xyz | specific humidity |
| Q | ARIESg3 | 1 | xyz | specific humidity |
| Q | DatmoDyn | ms | xyz | meridional wind |
| Q | Physics | kg m-2 s-1 | xy | vertically integrated odd oxygen tendency due to physics |
| Q | Gwd | kg kg-1 | xyz | specific humidity |
| Q10M | Surface | kg kg-1 | xy | 10-meter specific humidity |
| Q250 | FVdycore | kg kg-1 | xy | specific humidity at 250 hPa |
| Q250 | DynCore | kg kg-1 | xy | specific humidity at 250 hPa |
| Q250 | ARIESg3 | kg kg-1 | xy | specific humidity at 250 hPa |
| Q2M | Surface | kg kg-1 | xy | 2-meter specific humidity |
| Q500 | FVdycore | kg kg-1 | xy | specific humidity at 500 hPa |
| Q500 | DynCore | kg kg-1 | xy | specific humidity at 500 hPa |
| Q500 | ARIESg3 | kg kg-1 | xy | specific humidity at 500 hPa |
| Q850 | FVdycore | kg kg-1 | xy | specific humidity at 850 hPa |
| Q850 | DynCore | kg kg-1 | xy | specific humidity at 850 hPa |
| Q850 | ARIESg3 | kg kg-1 | xy | specific humidity at 850 hPa |
| QA | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| QA | FVdycore | kg kg-1 | xy | surface specific humidity |
| QA | DynCore | 1 | xy | surface specific humidity |
| QA | ARIESg3 | kg kg-1 | xy | surface specific humidity |
| QA | DatmoDyn | 1 | xy | Surface air spec humidity |
| QA | Surface | kg kg-1 | xy | surface air specific humidity |
| QCTOT | Gcm | |||
| QCTOT | Agcm | m+2 | xy | isotropic variance of filtered topography |
| QCTOT | Physics | kg m-2 s-1 | xy | vertically integrated odd oxygen tendency due to physics |
| QCTOT | Moist | kg kg-1 | xyz | mass fraction of total cloud water |
| QDWL | Surface | kg kg-1 | xy | surface liquid condensate |
| QFIXER | FVdycore | W m-2 | xy | vertically integrated potential energy tendency due to CONSV |
| QFIXER | DynCore | W m-2 | xy | vertically integrated potential energy tendency due to CONSV |
| QFIXER | ARIESg3 | W m-2 | xy | vertically integrated potential energy tendency due to CONSV |
| QFRL | Surface | kg kg-1 | xy | surface ice condensate |
| QH | Lake | kg kg-1 | tile | turbulence surface specific humidity |
| QH | Landice | kg kg-1 | tile | turbulence surface specific humidity |
| QH | Catch | kg kg-1 | tile | turbulence surface skin specific hum |
| QH | Saltwater | kg kg-1 | tile | turbulence surface specific humidity |
| QHATOBS | DatmoDyn | K s-1 | xyz | Obs. Moisture Tendency H adv |
| QI | Moist | kg kg-1 | xyz | cloud ice for radiation |
| QICN | Moist | 1 | xyz | mass fraction of convective cloud ice water |
| QICNX0 | Moist | kg kg-1 | xyz | mass fraction of convective cloud ice water |
| QIFILL | Agcm | kg m-2 s-1 | xy | vertically integrated qi adjustment from filling |
| QILSIT | Physics | kg kg-1 s-1 | xyz | tendency of frozen condensate due to turbulence |
| QILSX0 | Moist | kg kg-1 | xyz | mass fraction of large scale cloud ice water |
| QINFIL | Surface | kg m-2 s-1 | xy | Soil water infiltration rate |
| QINFIL | Catch | kg m-2 s-1 | tile | rainwater infiltration flux |
| QIOBS | DatmoDyn | 1 | xyz | Obs. Cloud ice |
| QITOT | Gcm | |||
| QITOT | Agcm | kg kg-1 | xyz | mass fraction of cloud ice water |
| QITOT | Moist | kg kg-1 | xyz | mass fraction of cloud ice water |
| QL | Moist | kg kg-1 | xyz | cloud liquid for radiation |
| QLCN | Moist | 1 | xyz | mass fraction of convective cloud liquid water |
| QLCNX0 | Moist | kg kg-1 | xyz | mass fraction of convective cloud liquid water |
| QLFILL | Agcm | kg m-2 s-1 | xy | vertically integrated ql adjustment from filling |
| QLLSIT | Physics | kg kg-1 s-1 | xyz | tendency of liquid condensate due to turbulence |
| QLLSX0 | Moist | kg kg-1 | xyz | mass fraction of large scale cloud liquid water |
| QLOBS | DatmoDyn | 1 | xyz | Obs. Cloud liquid |
| QLTOT | Gcm | |||
| QLTOT | Agcm | kg kg-1 | xyz | mass fraction of cloud liquid water |
| QLTOT | Moist | kg kg-1 | xyz | mass fraction of cloud liquid water |
| QOBS | DatmoDyn | 1 | xyz | Obs. Spec. Humidity |
| QR | Moist | kg kg-1 | xyz | Falling rain for radiation |
| QRTOT | Moist | kg kg-1 | xyz | mass fraction of falling rain |
| QS | Moist | kg kg-1 | xyz | Falling snow for radiation |
| QSATI | Moist | kg kg-1 | xyz | saturation spec hum over ice |
| QSATL | Moist | kg kg-1 | xyz | saturation spec hum over liquid |
| QSKINOBS | DatmoDyn | 1 | xy | obs skin spec humidity whatever that means |
| QST | Lake | kg kg-1 | tile | surface specific humidity |
| QST | Landice | kg kg-1 | tile | surface specific humidity |
| QST | Catch | kg kg-1 | tile | surface specific humidity |
| QST | Saltwater | kg kg-1 | tile | surface specific humidity |
| QSTAR | Surface | kg kg-1 | xy | surface moisture scale |
| QSTOT | Moist | kg kg-1 | xyz | mass fraction of falling snow |
| QTEST | DatmoDyn | 1 | xyz | test tracer |
| QTFILL | Agcm | kg m-2 s-1 | xy | vertically integrated total water adjustment from filling |
| QV | Moist | kg kg-1 | xyz | water vapor for radiation |
| QV | Turbulence | kg kg-1 | xyz | specific humidity |
| QVATOBS | DatmoDyn | K s-1 | xyz | Obs. Moisture Tendency V adv |
| QVFILL | Agcm | kg m-2 s-1 | xy | vertically integrated qv adjustment from filling |
| QVIT | Physics | kg kg-1 s-1 | xyz | tendency of specific humidity due to turbulence |
| QVRAS | Moist | kg kg-1 | xyz | water vapor after ras |
| QX0 | Moist | kg kg-1 | xyz | specific humidity |
| RADARLTCC | Satsim | 1 | xy | Radar and lidar total cloud amount |
| RADARZETOT | Satsim | 1 | xyz | radar output |
| RADLW | Radiation | K s-1 | xyz | air temperature tendency due to longwave |
| RADLWC | Radiation | K s-1 | xyz | air temperature tendency due to longwave for clear skies |
| RADLWCNA | Radiation | K s-1 | xyz | air temperature tendency due to longwave for clear skies no aerosol |
| RADRCODE | Turbulence | 1 | xy | Return codes for Lock top driven plume |
| RADSRF | Radiation | W m-2 | xy | net downwelling radiation at surface |
| RADSW | Radiation | K s-1 | xyz | air temperature tendency due to shortwave |
| RADSWC | Radiation | K s-1 | xyz | air temperature tendency due to shortwave for clear skies |
| RADSWCNA | Radiation | K s-1 | xyz | air temperature tendency due to shortwave for clear skies no aerosol |
| RADSWNA | Radiation | K s-1 | xyz | air temperature tendency due to shortwave no aerosol |
| RAINOCN | Surface | kg m-2 s-1 | xy | ocean rainfall |
| RAINOCN | Saltwater | kg m-2 s-1 | tile | ocean rainfall |
| RASPBLQ | Moist | (m+3 s-1)+12 | xy | sqrt of integral KH dz |
| RASTIME | Moist | s | xy | timescale for deep RAS plumes |
| RCCODE | Moist | codes | xyz | Convection return codes |
| RE | Surface | 1 | xy | surface reynolds number |
| REFFICE | GMIchem | cm | xyz | ice aerosol effective radius |
| REFFICE | GMIchem | cm | xyz | Effective radius of ice aerosols |
| REFFSTS | GMIchem | cm | xyz | STS aerosol effective radius |
| REFFSTS | GMIchem | cm | xyz | Effective radius of STS aerosols |
| RET | Saltwater | 1 | tile | surface reynolds number |
| REVSU_CN | Moist | kg kg-1 s-1 | xyz | evap subl of convective precipitation |
| REVSU_LSAN | Moist | kg kg-1 s-1 | xyz | evap subl of non convective precipitation |
| REV_AN | Moist | kg kg-1 s-1 | xyz | evaporation of anvil precipitation |
| REV_CN | Moist | kg kg-1 s-1 | xyz | evaporation of convective precipitation |
| REV_LS | Moist | kg kg-1 s-1 | xyz | evaporation of nonanvil large scale precipitation |
| RH1 | Moist | 1 | xyz | relative humidity before moist |
| RH2 | Moist | 1 | xyz | relative humidity after moist |
| RH2M | Surface | % | xy | near-surface relative humidity |
| RH2MMAX | Surface | % | xy | daily maximum near-surface relative humidity |
| RH2MMIN | Surface | % | xy | daily minimum near-surface relative humidity |
| RHCLR | Moist | 1 | xyz | RH clear sky |
| RHO | Gcm | |||
| RHO | Ogcm | N m-2 | tile | northward stress at base of ice |
| RHX | Moist | 1 | xyz | relative humidity after PDF |
| RI | Moist | m | xyz | ice phase cloud particle effective radius |
| RI | Surface | 1 | xy | surface bulk richardson number |
| RI | Turbulence | 1 | xyz | Richardson number from Louis |
| RIT | Lake | 1 | tile | surface bulk richardson number |
| RIT | Landice | 1 | tile | surface bulk richardson number |
| RIT | Catch | 1 | tile | surface bulk richardson number |
| RIT | Saltwater | 1 | tile | surface bulk richardson number |
| RL | Moist | m | xyz | liquid cloud particle effective radius |
| ROOTL | Surface | m m-3 | xy | root length |
| ROOTL | Vegdyn | m+2 | tile | root length density |
| RR | Moist | m | xyz | falling rain particle effective radius |
| RS | Moist | m | xyz | falling ice particle effective radius |
| RSC | Solar | W m-2 | xy | toa net downward shortwave flux assuming clear sky |
| RSCNA | Solar | W m-2 | xy | toa net downward shortwave flux assuming clear sky and no aerosol |
| RSCS | Solar | W m-2 | xy | surface net downward shortwave flux assuming clear sky |
| RSCSNA | Solar | W m-2 | xy | surface net downward shortwave flux assuming clear sky and no aerosol |
| RSR | Solar | W m-2 | xy | toa net downward shortwave flux |
| RSRNA | Solar | W m-2 | xy | toa net downward shortwave flux assuming no aerosol |
| RSRS | Solar | W m-2 | xy | surface net downward shortwave flux |
| RSRSNA | Solar | W m-2 | xy | surface net downward shortwave flux assuming no aerosol |
| RSU_AN | Moist | kg kg-1 s-1 | xyz | sublimation of anvil precipitation |
| RSU_CN | Moist | kg kg-1 s-1 | xyz | sublimation of convective precipitation |
| RSU_LS | Moist | kg kg-1 s-1 | xyz | sublimation of nonanvil large scale precipitation |
| RUNOFF | Surface | kg m-2 s-1 | xy | runoff flux |
| RUNOFF | Landice | kg m-2 s-1 | tile | runoff flux |
| RUNOFF | Catch | kg m-2 s-1 | tile | runoff flux |
| RUNSURF | Surface | kg m-2 s-1 | xy | surface runoff flux |
| RUNSURF | Catch | kg m-2 s-1 | tile | surface runoff flux |
| RZEQ | Catch | kg m-2 | tile | root zone equilibrium moisture |
| RnCL | Rn | kg m-2 | xy | Rn Column Burden ENSEMBLE |
| RnCLAfri | Rn | kg m-2 | xy | Rn Column Burden Africa |
| RnCLAsia | Rn | kg m-2 | xy | Rn Column Burden Asia |
| RnCLAust | Rn | kg m-2 | xy | Rn Column Burden Australia |
| RnCLEuro | Rn | kg m-2 | xy | Rn Column Burden Europe |
| RnCLNoAm | Rn | kg m-2 | xy | Rn Column Burden North America |
| RnCLSoAm | Rn | kg m-2 | xy | Rn Column Burden South America |
| RnEM | Rn | kg m-2 s-1 | xy | Rn Emission ENSEMBLE |
| RnEMAfri | Rn | kg m-2 s-1 | xy | Rn Emission Africa |
| RnEMAsia | Rn | kg m-2 s-1 | xy | Rn Emission Asia |
| RnEMAust | Rn | kg m-2 s-1 | xy | Rn Emission Australia |
| RnEMEuro | Rn | kg m-2 s-1 | xy | Rn Emission Europe |
| RnEMNoAm | Rn | kg m-2 s-1 | xy | Rn Emission North America |
| RnEMSoAm | Rn | kg m-2 s-1 | xy | Rn Emission South America |
| RnLS | Rn | kg m-2 s-1 | xy | Rn Decay ENSEMBLE |
| RnLSAfri | Rn | kg m-2 s-1 | xy | Rn Decay Africa |
| RnLSAsia | Rn | kg m-2 s-1 | xy | Rn Decay Asia |
| RnLSAust | Rn | kg m-2 s-1 | xy | Rn Decay Australia |
| RnLSEuro | Rn | kg m-2 s-1 | xy | Rn Decay Europe |
| RnLSNoAm | Rn | kg m-2 s-1 | xy | Rn Decay North America |
| RnLSSoAm | Rn | kg m-2 s-1 | xy | Rn Decay South America |
| RnSC | Rn | molmol | xy | Rn Surface Concentration ENSEMBLE |
| RnSCAfri | Rn | molmol | xy | Rn Surface Concentration Africa |
| RnSCAsia | Rn | molmol | xy | Rn Surface Concentration Asia |
| RnSCAust | Rn | molmol | xy | Rn Surface Concentration Australia |
| RnSCEuro | Rn | molmol | xy | Rn Surface Concentration Europe |
| RnSCNoAm | Rn | molmol | xy | Rn Surface Concentration North America |
| RnSCSoAm | Rn | molmol | xy | Rn Surface Concentration South America |
| S | Gcm | |||
| S | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| S | FVdycore | m | xyz | mid layer dry static energy |
| S | DynCore | m | xyz | mid layer dry static energy |
| S | ARIESg3 | m | xyz | mid layer dry static energy |
| S | DatmoDyn | J kg-1 | xyz | static energy |
| S | Ogcm | N m-2 | tile | northward stress at base of ice |
| SALT | PChem | kg kg-1 | xyz | sea salt mixing ratio |
| SALTFLUX | Surface | kg m-2 s-1 | xy | salt flux bw saltwater ocean |
| SDM | Moist | kg kg-1 s-1 | xyz | sedimentation sink of cloud ice |
| SDMZ | Moist | kg m-2 s-1 | xy | sedimentation loss of cloud ice |
| SFCEM | Irrad | W m-2 | xy | longwave flux emitted from surface |
| SFCEM0 | Irrad | W m-2 | xy | longwave flux emitted from surface at reference time |
| SGFCLD | Satsim | 1 | xyz | summed subgrid cloud fraction from scops |
| SGH | Agcm | m | xy | isotropic stdv of GWD topography |
| SGH | Gwd | m | xy | standard deviation of topography |
| SH | Surface | W m-2 | xy | sensible heat flux from turbulence |
| SHAT | Surface | m+2 s-2 | xy | effective surface dry static energy |
| SHICE | Surface | W m-2 | xy | sea ice upward sensible heat flux |
| SHICE | Saltwater | W m-2 | tile | sea ice upward sensible heat flux |
| SHLAND | Surface | W m-2 | xy | Sensible heat flux land |
| SHLAND | Catch | W m-2 | tile | Sensible heat flux land |
| SHOBS | DatmoDyn | W m-2 | xy | Obs. sensible heat flux (surface) |
| SHOUT | Surface | W m-2 | xy | upward sensible heat flux |
| SHOUT | Lake | W m-2 | tile | upward sensible heat flux |
| SHOUT | Landice | W m-2 | tile | upward sensible heat flux |
| SHOUT | Catch | W m-2 | tile | upward sensible heat flux |
| SHOUT | Saltwater | W m-2 | tile | upward sensible heat flux |
| SHSNOW | Surface | W m-2 | xy | downward heat flux into snow |
| SHSNOW | Catch | W m-2 | tile | downward heat flux into snow |
| SHWTR | Surface | W m-2 | xy | open water upward sensible heat flux |
| SHWTR | Saltwater | W m-2 | tile | open water upward sensible heat flux |
| SIT | Physics | Pa m+2 s-3 | xyz | pressure weighted tendency of dry static energy due to turbulence |
| SLP | FVdycore | Pa | xy | sea level pressure |
| SLP | DynCore | Pa | xy | sea level pressure |
| SLP | ARIESg3 | Pa | xy | sea level pressure |
| SLRSF | Solar | W m-2 | xy | surface incoming shortwave flux |
| SLRSFC | Solar | W m-2 | xy | surface incoming shortwave flux assuming clear sky |
| SLRSFCNA | Solar | W m-2 | xy | surface incoming shortwave flux assuming clear clean sky |
| SLRSFNA | Solar | W m-2 | xy | surface incoming shortwave flux assuming clean sky |
| SLRSUF | Solar | W m-2 | xy | surface outgoing shortwave flux |
| SLRSUFC | Solar | W m-2 | xy | surface outgoing shortwave flux assuming clear sky |
| SLRSUFCNA | Solar | W m-2 | xy | surface outgoing shortwave flux assuming clear clean sky |
| SLRSUFNA | Solar | W m-2 | xy | surface outgoing shortwave flux assuming clean sky |
| SLRTP | Solar | W m-2 | xy | toa incoming shortwave flux |
| SMELT | Surface | kg m-2 s-1 | xy | snowmelt flux |
| SMELT | Landice | kg m-2 s-1 | tile | snowmelt flux |
| SMELT | Catch | kg m-2 s-1 | tile | snowmelt flux |
| SMIXT | Turbulence | J kg-1 | xy | s of optimal mixture for BRV |
| SMLAND | Surface | kg m-2 s-1 | xy | Snowmelt flux land |
| SMLAND | Catch | kg m-2 s-1 | tile | Snowmelt flux land |
| SNO | Moist | kg m-2 s-1 | xy | snowfall |
| SNO | Surface | kg m-2 s-1 | xy | snowfall |
| SNOICE | Surface | m s-1 | xy | snow-ice formation |
| SNOMAS | Gcm | |||
| SNOMAS | Agcm | m+2 | xy | isotropic variance of filtered topography |
| SNOMAS | Physics | kg m-2 s-1 | xy | vertically integrated odd oxygen tendency due to physics |
| SNOMAS | Surface | kg m-2 | xy | snow mass |
| SNOWDP | Surface | m | xy | snow depth |
| SNOWDP | Catch | m | tile | snow depth |
| SNOWMASS | Landice | kg m-2 | tile | snow mass |
| SNOWMASS | Catch | kg m-2 | tile | snow mass |
| SNOWOCN | Surface | kg m-2 s-1 | xy | ocean snowfall |
| SNOWOCN | Saltwater | kg m-2 s-1 | tile | ocean snowfall |
| SO2CMASS | SU | kg m-2 | xy | SO2 Column Mass Density |
| SO2EMAN | SU | kg m-2 s-1 | xy | SO2 Anthropogenic Emissions |
| SO2EMBB | SU | kg m-2 s-1 | xy | SO2 Biomass Burning Emissions |
| SO2EMVE | SU | kg m-2 s-1 | xy | SO2 Volcanic (explosive) Emissions |
| SO2EMVN | SU | kg m-2 s-1 | xy | SO2 Volcanic (non-explosive) Emissions |
| SO2SMASS | SU | kg m-3 | xy | SO2 Surface Mass Concentration |
| SO4 | PChem | kg kg-1 | xyz | sulfate aerosol mixing ratio |
| SO4CMASS | SU | kg m-2 | xy | SO4 Column Mass Density |
| SO4EMAN | SU | kg m-2 s-1 | xy | SO4 Anthropogenic Emissions |
| SO4HYGRO | GMIchem | 1 | xyz | Hygroscopic growth of sulfate |
| SO4MASS | SU | kg kg-1 | xyz | SO4 Aerosol Mass Mixing Ratio |
| SO4OD | GMIchem | 1 | xyz | Sulfate optical depth (400 nm) |
| SO4SA | GMIchem | cm2cm3 | xyz | Sulfate surface area |
| SO4SMASS | SU | kg m-3 | xy | SO4 Surface Mass Concentration |
| SPEED | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| SPEED | FVdycore | m s-1 | xy | surface wind speed |
| SPEED | DynCore | m s-1 | xy | surface wind speed |
| SPEED | ARIESg3 | m s-1 | xy | surface wind speed |
| SPEED | DatmoDyn | m s-1 | xy | Surface wind speed |
| SPLAND | Surface | W m-2 | xy | rate of spurious land energy source |
| SPLAND | Catch | W m-2 | tile | rate of spurious land energy source |
| SPSNOW | Surface | W m-2 | xy | rate of spurious snow energy |
| SPSNOW | Catch | W m-2 | tile | rate of spurious snow energy |
| SPWATR | Surface | kg m-2 s-1 | xy | rate of spurious land water source |
| SPWATR | Catch | kg m-2 s-1 | tile | rate of spurious land water source |
| SRFDIS | Turbulence | K s-1 Pa | xy | p-weighted frictional heating rate from surface drag |
| SSAERIDX | SS | 1 | xy | Sea Salt TOMS UV Aerosol Index |
| SSAHYGRO | GMIchem | 1 | xyz | Hygroscopic growth of accumulated sea salt |
| SSANA | GAAS | kgkg | xyz | Sea-salt Mixing Ratio Analysis |
| SSANGSTR | SS | 1 | xy | Sea Salt Angstrom parameter [470-870 nm] |
| SSAOD | GMIchem | 1 | xyz | Accumulated sea salt optical depth (400 nm) |
| SSASA | GMIchem | cm2cm3 | xyz | Accumulated sea salt surface area |
| SSCHYGRO | GMIchem | 1 | xyz | Hygroscopic growth of coarse sea salt |
| SSCMASS | SS | kg m-2 | xy | Sea Salt Column Mass Density |
| SSCMASS25 | SS | kg m-2 | xy | Sea Salt Column Mass Density - PM 2.5 |
| SSCOD | GMIchem | 1 | xyz | Coarse sea salt optical depth (400 nm) |
| SSCONC | SS | kg m-3 | xyz | Sea Salt Mass Concentration |
| SSCSA | GMIchem | cm2cm3 | xyz | Coarse sea salt surface area |
| SSDP001 | SS | kg m-2 s-1 | xy | Sea Salt Dry Deposition Bin 001 |
| SSDP002 | SS | kg m-2 s-1 | xy | Sea Salt Dry Deposition Bin 002 |
| SSDP003 | SS | kg m-2 s-1 | xy | Sea Salt Dry Deposition Bin 003 |
| SSDP004 | SS | kg m-2 s-1 | xy | Sea Salt Dry Deposition Bin 004 |
| SSDP005 | SS | kg m-2 s-1 | xy | Sea Salt Dry Deposition Bin 005 |
| SSEM001 | SS | kg m-2 s-1 | xy | Sea Salt Emission Bin 001 |
| SSEM002 | SS | kg m-2 s-1 | xy | Sea Salt Emission Bin 002 |
| SSEM003 | SS | kg m-2 s-1 | xy | Sea Salt Emission Bin 003 |
| SSEM004 | SS | kg m-2 s-1 | xy | Sea Salt Emission Bin 004 |
| SSEM005 | SS | kg m-2 s-1 | xy | Sea Salt Emission Bin 005 |
| SSEXTCOEF | SS | m-1 | xyz | Sea Salt Extinction Coefficient [550 nm] |
| SSEXTT25 | SS | 1 | xy | Sea Salt Extinction AOT [550 nm] - PM 2.5 |
| SSEXTTAU | SS | 1 | xy | Sea Salt Extinction AOT [550 nm] |
| SSEXTTFM | SS | 1 | xy | Sea Salt Extinction AOT [550 nm] - PM 1.0 um |
| SSFLUXU | SS | kg m-1 s-1 | xy | Sea Salt column u-wind mass flux |
| SSFLUXV | SS | kg m-1 s-1 | xy | Sea Salt column v-wind mass flux |
| SSH | Gcm | |||
| SSH | Ogcm | N m-2 | tile | northward stress at base of ice |
| SSINC | GAAS | kgkg | xyz | Sea-salt Mixing Ratio Analysis Increments |
| SSKINW | Surface | psu | xy | sea skin layer salinity |
| SSMASS | SS | kg kg-1 | xyz | Sea Salt Mass Mixing Ratio |
| SSMASS25 | SS | kg kg-1 | xyz | Sea Salt Mass Mixing Ratio - PM 2.5 |
| SSSCACOEF | SS | m-1 | xyz | Sea Salt Scattering Coefficient [550 nm] |
| SSSCAT25 | SS | 1 | xy | Sea Salt Scattering AOT [550 nm] - PM 2.5 |
| SSSCATAU | SS | 1 | xy | Sea Salt Scattering AOT [550 nm] |
| SSSCATFM | SS | 1 | xy | Sea Salt Scattering AOT [550 nm] - PM 1.0 um |
| SSSD001 | SS | kg m-2 s-1 | xy | Sea Salt Sedimentation Bin 001 |
| SSSD002 | SS | kg m-2 s-1 | xy | Sea Salt Sedimentation Bin 002 |
| SSSD003 | SS | kg m-2 s-1 | xy | Sea Salt Sedimentation Bin 003 |
| SSSD004 | SS | kg m-2 s-1 | xy | Sea Salt Sedimentation Bin 004 |
| SSSD005 | SS | kg m-2 s-1 | xy | Sea Salt Sedimentation Bin 005 |
| SSSMASS | SS | kg m-3 | xy | Sea Salt Surface Mass Concentration |
| SSSMASS25 | SS | kg m-3 | xy | Sea Salt Surface Mass Concentration - PM 2.5 |
| SSWT001 | SS | kg m-2 s-1 | xy | Sea Salt Wet Deposition Bin 001 |
| SSWT002 | SS | kg m-2 s-1 | xy | Sea Salt Wet Deposition Bin 002 |
| SSWT003 | SS | kg m-2 s-1 | xy | Sea Salt Wet Deposition Bin 003 |
| SSWT004 | SS | kg m-2 s-1 | xy | Sea Salt Wet Deposition Bin 004 |
| SSWT005 | SS | kg m-2 s-1 | xy | Sea Salt Wet Deposition Bin 005 |
| SUANA | GAAS | kgkg | xyz | Sulfate Mixing Ratio Analysis |
| SUANGSTR | SU | 1 | xy | SO4 Angstrom parameter [470-870 nm] |
| SUBCZ | Moist | kg m-2 s-1 | xy | sumblimation loss of cloud ice |
| SUBLC | Moist | kg kg-1 s-1 | xyz | sublimation of cloud ice |
| SUBLIM | Surface | kg m-2 s-1 | xy | sublimation |
| SUBLIM | Lake | kg m-2 s-1 | tile | sublimation |
| SUBLIM | Landice | kg m-2 s-1 | tile | sublimation |
| SUBLIM | Catch | kg m-2 s-1 | tile | sublimation |
| SUBLIM | Saltwater | kg m-2 s-1 | tile | sublimation |
| SUBPZ | Moist | kg m-2 s-1 | xy | sumblimation loss of precip ice |
| SUCONC | SU | kg m-3 | xyz | SO4 Aerosol Mass Concentration |
| SUDP001 | SU | kg m-2 s-1 | xy | Sulfate Dry Deposition Bin 001 |
| SUDP002 | SU | kg m-2 s-1 | xy | Sulfate Dry Deposition Bin 002 |
| SUDP003 | SU | kg m-2 s-1 | xy | Sulfate Dry Deposition Bin 003 |
| SUDP004 | SU | kg m-2 s-1 | xy | Sulfate Dry Deposition Bin 004 |
| SUEM001 | SU | kg m-2 s-1 | xy | Sulfate Emission Bin 001 |
| SUEM002 | SU | kg m-2 s-1 | xy | Sulfate Emission Bin 002 |
| SUEM003 | SU | kg m-2 s-1 | xy | Sulfate Emission Bin 003 |
| SUEM004 | SU | kg m-2 s-1 | xy | Sulfate Emission Bin 004 |
| SUEXTCOEF | SU | m-1 | xyz | SO4 Extinction Coefficient [550 nm] |
| SUEXTTAU | SU | 1 | xy | SO4 Extinction AOT [550 nm] |
| SUFLUXU | SU | kg m-1 s-1 | xy | SO4 column u-wind mass flux |
| SUFLUXV | SU | kg m-1 s-1 | xy | SO4 column v-wind mass flux |
| SUINC | GAAS | kgkg | xyz | Sulfate Mixing Ratio Analysis Increments |
| SUPMSA | SU | kg m-2 s-1 | xy | MSA Prod from DMS Oxidation [column] |
| SUPSO2 | SU | kg m-2 s-1 | xy | SO2 Prod from DMS Oxidation [column] |
| SUPSO4AQ | SU | kg m-2 s-1 | xy | SO4 Prod from Aqueous SO2 Oxidation [column] |
| SUPSO4G | SU | kg m-2 s-1 | xy | SO4 Prod from Gaseous SO2 Oxidation [column] |
| SUPSO4WT | SU | kg m-2 s-1 | xy | SO4 Prod from Aqueous SO2 Oxidation (wet dep) [column] |
| SUSCACOEF | SU | m-1 | xyz | SO4 Scattering Coefficient [550 nm] |
| SUSCATAU | SU | 1 | xy | SO4 Scattering AOT [550 nm] |
| SUWT001 | SU | kg m-2 s-1 | xy | Sulfate Wet Deposition Bin 001 |
| SUWT002 | SU | kg m-2 s-1 | xy | Sulfate Wet Deposition Bin 002 |
| SUWT003 | SU | kg m-2 s-1 | xy | Sulfate Wet Deposition Bin 003 |
| SUWT004 | SU | kg m-2 s-1 | xy | Sulfate Wet Deposition Bin 004 |
| SWHEAT | Orad | W m-2 | xyz | solar heating rate |
| SWLAND | Surface | W m-2 | xy | Net shortwave land |
| SWLAND | Catch | W m-2 | tile | Net shortwave land |
| SWNDICE | Surface | W m-2 | xy | sea ice net downward shortwave flux |
| SWNDICE | Saltwater | W m-2 | tile | sea ice net downward shortwave flux |
| SWNDSRF | Surface | W m-2 | xy | surface net downward shortwave flux |
| SWNDSRF | Lake | W m-2 | tile | surface net downward shortwave flux |
| SWNDSRF | Landice | W m-2 | tile | surface net downward shortwave flux |
| SWNDSRF | Catch | W m-2 | tile | surface net downward shortwave flux |
| SWNDSRF | Saltwater | W m-2 | tile | surface net downward shortwave flux |
| SWNDWTR | Surface | W m-2 | xy | open water net downward shortwave flux |
| SWNDWTR | Saltwater | W m-2 | tile | open water net downward shortwave flux |
| T | Gcm | |||
| T | Agcm | m+2 | xy | isotropic variance of filtered topography |
| T | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| T | FVdycore | K | xyz | air temperature |
| T | DynCore | K | xyz | air temperature |
| T | ARIESg3 | K | xyz | air temperature |
| T | DatmoDyn | K | xyz | air temperature |
| T | Turbulence | K | xyz | air temperature |
| T | Gwd | K | xyz | air temperature |
| T | Ogcm | N m-2 | tile | northward stress at base of ice |
| T10M | Surface | K | xy | 10-meter air temperature |
| T250 | FVdycore | K | xy | air temperature at 250 hPa |
| T250 | DynCore | K | xy | air temperature at 250 hPa |
| T250 | ARIESg3 | K | xy | air temperature at 250 hPa |
| T2M | Surface | K | xy | 2-meter air temperature |
| T2MMAX | Surface | K | xy | daily maximum near-surface air temperature |
| T2MMIN | Surface | K | xy | daily minimum near-surface air temperature |
| T300 | DynCore | K | xy | air temperature at 300 hPa |
| T500 | FVdycore | K | xy | air temperature at 500 hPa |
| T500 | DynCore | K | xy | air temperature at 500 hPa |
| T500 | ARIESg3 | K | xy | air temperature at 500 hPa |
| T700 | DynCore | K | xy | air temperature at 700 hPa |
| T850 | FVdycore | K | xy | air temperature at 850 hPa |
| T850 | DynCore | K | xy | air temperature at 850 hPa |
| T850 | ARIESg3 | K | xy | air temperature at 850 hPa |
| TA | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| TA | FVdycore | K | xy | surface air temperature |
| TA | DynCore | K | xy | surface air temperature |
| TA | ARIESg3 | K | xy | surface air temperature |
| TA | DatmoDyn | K | xy | Surface air temperature |
| TA | Surface | K | xy | surface air temperature |
| TAUA1 | Solar | 1 | xyz | aerosol optical thickness in 0.225-0.285 band |
| TAUA2 | Solar | 1 | xyz | aerosol optical thickness in 0.175-0.225 0.285-0.300 band |
| TAUA3 | Solar | 1 | xyz | aerosol optical thickness in 0.300-0.325 band |
| TAUA4 | Solar | 1 | xyz | aerosol optical thickness in 0.325-0.4 band |
| TAUA5 | Solar | 1 | xyz | aerosol optical thickness in 0.4-0.690 band |
| TAUA6 | Solar | 1 | xyz | aerosol optical thickness in 0.690-1.220 band |
| TAUA7 | Solar | 1 | xyz | aerosol optical thickness in 1.220-2.270 band |
| TAUA8 | Solar | 1 | xyz | aerosol optical thickness in 2.270-3.850 band |
| TAUBC | Solar | 1 | xyz | black carbon optical thickness in 0.4-0.690 band |
| TAUBKGX | Gwd | N m-2 | xy | surface eastward background gravity wave stress |
| TAUBKGY | Gwd | N m-2 | xy | surface northward background gravity wave stress |
| TAUCLI | Radiation | W m-2 K-1 | xy | linearization of surface upwelling longwave flux |
| TAUCLI | Solar | 1 | xyz | optical thickness for ice clouds |
| TAUCLW | Radiation | W m-2 K-1 | xy | linearization of surface upwelling longwave flux |
| TAUCLW | Solar | 1 | xyz | optical thickness for liquid clouds |
| TAUDU | Solar | 1 | xyz | dust optical thickness in 0.4-0.690 band |
| TAUGWX | Gwd | N m-2 | xy | surface eastward gravity wave stress |
| TAUGWY | Gwd | N m-2 | xy | surface northward gravity wave stress |
| TAUHI | Solar | 1 | xy | optical thickness of high clouds(EXPORT) |
| TAUIR | Irrad | W m-2 | xyz | longwave cloud optical thickness at 800 cm-1 |
| TAULO | Solar | 1 | xy | optical thickness of low clouds |
| TAUMD | Solar | 1 | xy | optical thickness of middle clouds |
| TAUMSTX | Gwd | N m-2 | xy | surface eastward gravity wave stress due to Moist Processes |
| TAUMSTY | Gwd | N m-2 | xy | surface northward gravity wave stress due to Moist Processes |
| TAUOC | Solar | 1 | xyz | organic carbon optical thickness in 0.4-0.690 band |
| TAUOROX | Gwd | N m-2 | xy | surface eastward orographic gravity wave stress |
| TAUOROY | Gwd | N m-2 | xy | surface northward orographic gravity wave stress |
| TAUSO | Solar | 1 | xyz | sulfate optical thickness in 0.4-0.690 band |
| TAUSS | Solar | 1 | xyz | salt optical thickness in 0.4-0.690 band |
| TAUTT | Solar | 1 | xy | optical thickness of all clouds |
| TAUX | Surface | N m-2 | xy | eastward surface stress |
| TAUXI | Surface | N m-2 | xy | eastward stress over ice |
| TAUXI | Lake | N m-2 | tile | eastward stress over ice |
| TAUXI | Saltwater | N m-2 | tile | eastward stress over ice |
| TAUXIBOT | Ogcm | N m-2 | tile | eastward stress at base of ice |
| TAUXO | Lake | N m-2 | tile | eastward stress on ocean |
| TAUXO | Saltwater | N m-2 | tile | eastward stress on ocean |
| TAUXW | Surface | N m-2 | xy | eastward stress over water |
| TAUXW | Lake | N m-2 | tile | eastward stress over water |
| TAUXW | Saltwater | N m-2 | tile | eastward stress over water |
| TAUY | Surface | N m-2 | xy | northward surface stress |
| TAUYI | Surface | N m-2 | xy | northward stress over ice |
| TAUYI | Lake | N m-2 | tile | northward stress over ice |
| TAUYI | Saltwater | N m-2 | tile | northward stress over ice |
| TAUYIBOT | Ogcm | N m-2 | tile | northward stress at base of ice |
| TAUYO | Lake | N m-2 | tile | northward stress on ocean |
| TAUYO | Saltwater | N m-2 | tile | northward stress on ocean |
| TAUYW | Surface | N m-2 | xy | northward stress over water |
| TAUYW | Lake | N m-2 | tile | northward stress over water |
| TAUYW | Saltwater | N m-2 | tile | northward stress over water |
| TAVE | FVdycore | K | xy | vertically averaged dry temperature |
| TAVE | DynCore | K | xy | vertically averaged dry temperature |
| TAVE | ARIESg3 | K | xy | vertically averaged dry temperature |
| TBC | Solar | kg m-2 | xy | total black carbon aerosol loading |
| TCLISCCP | Satsim | 1 | xy | isccp total cloud area fraction |
| TDUST | Solar | kg m-2 | xy | total dust aerosol loading |
| TEANA | FVdycore | W m-2 | xy | mountain work tendency due to analysis |
| TEANA | DynCore | W m-2 | xy | mountain work tendency due to analysis |
| TEANA | ARIESg3 | W m-2 | xy | mountain work tendency due to analysis |
| TECDCOR | FVdycore | W m-2 | xy | mountain work tendency due to cdcore |
| TECDCOR | DynCore | W m-2 | xy | mountain work tendency due to cdcore |
| TECDCOR | ARIESg3 | W m-2 | xy | mountain work tendency due to cdcore |
| TEDYN | FVdycore | W m-2 | xy | mountain work tendency due to dynamics |
| TEDYN | DynCore | W m-2 | xy | mountain work tendency due to dynamics |
| TEDYN | ARIESg3 | W m-2 | xy | mountain work tendency due to dynamics |
| TELAND | Surface | J m-2 | xy | Total energy storage land |
| TELAND | Catch | J m-2 | tile | Total energy storage land |
| TEPHY | FVdycore | W m-2 | xy | mountain work tendency due to physics |
| TEPHY | DynCore | W m-2 | xy | mountain work tendency due to physics |
| TEPHY | ARIESg3 | W m-2 | xy | mountain work tendency due to physics |
| TEREMAP | FVdycore | W m-2 | xy | mountain work tendency due to remap |
| TEREMAP | DynCore | W m-2 | xy | mountain work tendency due to remap |
| TEREMAP | ARIESg3 | W m-2 | xy | mountain work tendency due to remap |
| TGSOILOBS | DatmoDyn | K | xy | Obs. Soil Temp. |
| TH | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| TH | FVdycore | K | xyz | potential temperature |
| TH | DynCore | K | xyz | potential temperature |
| TH | ARIESg3 | K | xyz | potential temperature |
| TH | DatmoDyn | K | xyz | potential temperature |
| TH | Lake | K | tile | turbulence surface skin temperature |
| TH | Landice | K | tile | turbulence surface skin temperature |
| TH | Catch | K | tile | turbulence surface skin temperature |
| TH | Saltwater | K | tile | turbulence surface temperature |
| THATOBS | DatmoDyn | K s-1 | xyz | Obs. Temperature Tendency H adv |
| THIM | Physics | Pa K s-1 | xyz | pressure weighted tendency of potential temperature due to moist processes |
| THV | Agcm | K | xy | vertically integrated virtual potential temperature |
| THV | FVdycore | KPa**kappa | xyz | scaled virtual potential temperature |
| THV | DynCore | KPa**kappa | xyz | scaled virtual potential temperature |
| THV | ARIESg3 | KPa**kappa | xyz | scaled virtual potential temperature |
| THX0 | Moist | K | xyz | potential temperature |
| TIF | Physics | K s-1 | xyz | tendency of air temperature due to friction |
| TILELATS | Ogcm | degrees | tile | latitude |
| TILELONS | Ogcm | degrees | tile | longitude |
| TIM | Physics | K s-1 | xyz | tendency of air temperature due to moist processes |
| TIMFRIC | Physics | K s-1 | xyz | tendency of air temperature due to moist processes friction |
| TIT | Physics | K s-1 | xyz | tendency of air temperature due to turbulence |
| TO3 | PChem | Dobsons | xy | total column ozone |
| TOBS | DatmoDyn | K | xyz | Obs. Temperature |
| TOC | Solar | kg m-2 | xy | total organic carbon aerosol loading |
| TOPDIS | Turbulence | K s-1 Pa | xyz | p-weighted frictional heating rate from orographic drag |
| TOTANGSTR | GOCART | 1 | xy | Total Aerosol Angstrom parameter [470-870 nm] |
| TOTEXTT25 | GOCART | 1 | xy | Total Aerosol Exinction AOT [550 nm] - PM2.5 |
| TOTEXTTAU | GOCART | 1 | xy | Total Aerosol Extinction AOT [550 nm] |
| TOTEXTTFM | GOCART | 1 | xy | Total Aerosol Exinction AOT [550 nm] - PM1.0 |
| TOTSCAT25 | GOCART | 1 | xy | Total Aerosol Scattering AOT [550 nm] - PM2.5 |
| TOTSCATAU | GOCART | 1 | xy | Total Aerosol Scattering AOT [550 nm] |
| TOTSCATFM | GOCART | 1 | xy | Total Aerosol Scattering AOT [550 nm] - PM1.0 |
| TOX | Agcm | kg m-2 | xy | total column odd oxygen |
| TP1 | Catch | C | tile | soil temperatures layer 1 |
| TP2 | Catch | C | tile | soil temperatures layer 2 |
| TP3 | Catch | C | tile | soil temperatures layer 3 |
| TP4 | Catch | C | tile | soil temperatures layer 4 |
| TP5 | Catch | C | tile | soil temperatures layer 5 |
| TP6 | Catch | C | tile | soil temperatures layer 6 |
| TPREC | Moist | kg m-2 s-1 | xy | total precipitation |
| TPSAT | Surface | K | xy | surface temperature of saturated zone |
| TPSAT | Catch | K | tile | temperature saturated zone |
| TPSNOW | Surface | K | xy | surface temperature of snow |
| TPSNOW | Catch | K | tile | temperature top snow layer |
| TPSURF | Surface | K | xy | surface temperature of land incl snow |
| TPSURF | Catch | K | tile | ave catchment temp incl snw |
| TPUNST | Surface | K | xy | surface temperature of unsaturated zone |
| TPUNST | Catch | K | tile | temperature unsaturated zone |
| TPW | Moist | kg m-2 | xy | total precipitable water |
| TPWLT | Surface | K | xy | surface temperature of wilted zone |
| TPWLT | Catch | K | tile | temperature wilted zone |
| TQI | Agcm | kg m-2 | xy | total precipitable ice water |
| TQL | Agcm | kg m-2 | xy | total precipitable liquid water |
| TQV | Agcm | kg m-2 | xy | total precipitable water vapor |
| TRADV | Physics | X | xyz | advected quantities |
| TRANA | Agcm | m+2 | xy | isotropic variance of filtered topography |
| TRANA | Physics | X | xyz | analyzed quantities |
| TRBVAR | Agcm | m+2 | xy | isotropic variance of TRB topography |
| TRI | Turbulence | X kg m-2 s-1 | xyz | diffusion tendencies |
| TRIEDLV | Moist | 0 or 1 | xyz | Tested for convection at this level |
| TROPP_BLENDED | Agcm | Pa | xy | tropopause pressure based on blended estimate |
| TROPP_BLENDED | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| TROPP_BLENDED | FVdycore | Pa | xy | tropopause pressure based on blended estimate |
| TROPP_BLENDED | DynCore | Pa | xy | tropopause pressure based on blended estimate |
| TROPP_BLENDED | ARIESg3 | Pa | xy | tropopause pressure based on blended estimate |
| TROPP_BLENDED | DatmoDyn | Pa | xy | tropopause pressure based on blended estimate |
| TROPP_EPV | Agcm | Pa | xy | tropopause pressure based on EPV estimate |
| TROPP_EPV | FVdycore | Pa | xy | tropopause pressure based on EPV estimate |
| TROPP_EPV | DynCore | Pa | xy | tropopause pressure based on EPV estimate |
| TROPP_EPV | ARIESg3 | Pa | xy | tropopause pressure based on EPV estimate |
| TROPP_THERMAL | Agcm | Pa | xy | tropopause pressure based on thermal estimate |
| TROPP_THERMAL | FVdycore | Pa | xy | tropopause pressure based on thermal estimate |
| TROPP_THERMAL | DynCore | Pa | xy | tropopause pressure based on thermal estimate |
| TROPP_THERMAL | ARIESg3 | Pa | xy | tropopause pressure based on thermal estimate |
| TROPQ | Agcm | kg kg-1 | xy | tropopause specific humidity using blended TROPP estimate |
| TROPQ | FVdycore | kg kg-1 | xy | tropopause specific humidity using blended TROPP estimate |
| TROPQ | DynCore | kgkg | xy | tropopause specific humidity using blended TROPP estimate |
| TROPQ | ARIESg3 | kgkg | xy | tropopause specific humidity using blended TROPP estimate |
| TROPT | Agcm | K | xy | tropopause temperature using blended TROPP estimate |
| TROPT | FVdycore | K | xy | tropopause temperature using blended TROPP estimate |
| TROPT | DynCore | K | xy | tropopause temperature using blended TROPP estimate |
| TROPT | ARIESg3 | K | xy | tropopause temperature using blended TROPP estimate |
| TS | Gcm | |||
| TS | Agcm | m+2 | xy | isotropic variance of filtered topography |
| TS | Physics | kg m-2 s-1 | xy | vertically integrated odd oxygen tendency due to physics |
| TSAIROBS | DatmoDyn | K | xy | Obs. sfc(2m?) air temp. |
| TSALT | Solar | kg m-2 | xy | total sea salt aerosol loading |
| TSKINOBS | DatmoDyn | K | xy | obs skin temperature |
| TSKINW | Surface | K | xy | open water skin temperature |
| TSKINWCICE | Surface | K | xy | CICE water skin temperature |
| TSLAND | Surface | kg m-2 | xy | Total snow storage land |
| TSLAND | Catch | kg m-2 | tile | Total snow storage land |
| TSO4 | Solar | kg m-2 | xy | total sulfate aerosol loading |
| TSOIL1 | Gcm | |||
| TSOIL1 | Agcm | m+2 | xy | isotropic variance of filtered topography |
| TSOIL1 | Physics | kg m-2 s-1 | xy | vertically integrated odd oxygen tendency due to physics |
| TSOIL1 | Surface | K | xy | soil temperatures layer 1 |
| TSOIL2 | Surface | K | xy | soil temperatures layer 2 |
| TSOIL3 | Surface | K | xy | soil temperatures layer 3 |
| TSOIL4 | Surface | K | xy | soil temperatures layer 4 |
| TSOIL5 | Surface | K | xy | soil temperatures layer 5 |
| TSOIL6 | Surface | K | xy | soil temperatures layer 6 |
| TSREFF | Irrad | K | xy | surface temperature |
| TST | Lake | K | tile | surface skin temperature |
| TST | Landice | K | tile | surface skin temperature |
| TST | Catch | K | tile | surface skin temperature |
| TST | Saltwater | K | tile | surface skin temperature |
| TSTAR | Surface | K | xy | surface temperature scale |
| TSX0 | Moist | K | xy | surface temperature |
| TTAUBC | Solar | 1 | xy | total black carbon optical thickness in 0.4-0.690 band |
| TTAUDU | Solar | 1 | xy | total dust optical thickness in 0.4-0.690 band |
| TTAUOC | Solar | 1 | xy | total organic carbon optical thickness in 0.4-0.690 band |
| TTAUSO | Solar | 1 | xy | total sulfate optical thickness in 0.4-0.690 band |
| TTAUSS | Solar | 1 | xy | total salt optical thickness in 0.4-0.690 band |
| TTMGW | Gwd | K s-1 | xyz | air temperature tendency due to GWD |
| TTO3 | PChem | Dobsons | xy | tropospheric column ozone |
| TURB | Oceanbiogeochem | m-1 | xy | water turbidity |
| TV | Gcm | |||
| TV | Agcm | m+2 | xy | isotropic variance of filtered topography |
| TV | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| TV | FVdycore | K | xyz | air virtual temperature |
| TV | DynCore | K | xyz | air virtual temperature |
| TV | ARIESg3 | K | xyz | air virtual temperature |
| TV | DatmoDyn | K | xyz | air virtual temperature |
| TVATOBS | DatmoDyn | K s-1 | xyz | Obs. Temperature Tendency V adv |
| TVE0 | Moist | J m-2 | xy | Total VI MSE Before |
| TVE1 | Moist | J m-2 | xy | Total VI MSE After |
| TVEX | Moist | J m-2 | xy | Total VI MSE Somewhere |
| TVQ0 | Moist | kg m-2 | xy | Total Water Substance Before |
| TVQ1 | Moist | kg m-2 | xy | Total Water Substance After |
| TWLAND | Surface | kg m-2 | xy | Avail water storage land |
| TWLAND | Catch | kg m-2 | tile | Avail water storage land |
| TX | Gcm | |||
| TX | Ogcm | N m-2 | tile | northward stress at base of ice |
| TY | Gcm | |||
| TY | Ogcm | N m-2 | tile | northward stress at base of ice |
| U | Gcm | |||
| U | Gcm | |||
| U | Agcm | m+2 | xy | isotropic variance of filtered topography |
| U | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| U | FVdycore | m s-1 | xyz | eastward wind |
| U | DynCore | m s-1 | xyz | eastward wind |
| U | ARIESg3 | m s-1 | xyz | eastward wind |
| U | DatmoDyn | ms | xyz | Zonal wind |
| U | Turbulence | m s-1 | xyz | eastward wind |
| U | Gwd | m s-1 | xyz | eastward wind |
| U | Ogcm | N m-2 | tile | northward stress at base of ice |
| U10M | Physics | kg m-2 s-1 | xy | vertically integrated odd oxygen tendency due to physics |
| U10M | Surface | m s-1 | xy | 10-meter eastward wind |
| U10N | Gcm | |||
| U10N | Agcm | m+2 | xy | isotropic variance of filtered topography |
| U10N | Physics | kg m-2 s-1 | xy | vertically integrated odd oxygen tendency due to physics |
| U10N | Surface | m s-1 | xy | equivalent neutral 10-meter eastward wind |
| U200 | DynCore | m s-1 | xy | eastward wind at 200 hPa |
| U250 | FVdycore | m s-1 | xy | eastward wind at 250 hPa |
| U250 | DynCore | m s-1 | xy | eastward wind at 250 hPa |
| U250 | ARIESg3 | m s-1 | xy | eastward wind at 250 hPa |
| U2M | Surface | m s-1 | xy | 2-meter eastward wind |
| U500 | FVdycore | m s-1 | xy | eastward wind at 500 hPa |
| U500 | DynCore | m s-1 | xy | eastward wind at 500 hPa |
| U500 | ARIESg3 | m s-1 | xy | eastward wind at 500 hPa |
| U50M | FVdycore | m s-1 | xy | eastward wind at 50 meters |
| U50M | DynCore | m s-1 | xy | eastward wind at 50 meters |
| U50M | ARIESg3 | m s-1 | xy | eastward wind at 50 meters |
| U50M | Surface | m s-1 | xy | 50-meter eastward wind |
| U700 | DynCore | m s-1 | xy | eastward wind at 700 hPa |
| U850 | FVdycore | m s-1 | xy | eastward wind at 850 hPa |
| U850 | DynCore | m s-1 | xy | eastward wind at 850 hPa |
| U850 | ARIESg3 | m s-1 | xy | eastward wind at 850 hPa |
| UA | Surface | m s-1 | xy | surface eastward wind |
| UAVE | FVdycore | m s-1 | xy | vertically averaged zonal wind |
| UAVE | DynCore | m sec-1 | xy | vertically averaged zonal wind |
| UAVE | ARIESg3 | m sec-1 | xy | vertically averaged zonal wind |
| UBAR | Gwd | m s-1 | xy | eastward component of mean level wind |
| UBASE | Gwd | m s-1 | xy | eastward component of base level wind |
| UCPT | FVdycore | J m-1 s-1 | xy | eastward flux of atmospheric enthalpy |
| UCPT | DynCore | J m-1 s-1 | xy | eastward flux of atmospheric enthalpy |
| UCPT | ARIESg3 | J m-1 s-1 | xy | eastward flux of atmospheric enthalpy |
| UE | DatmoDyn | m s-1 | xyz | Diagnosed Edge Winds |
| UH | Lake | m s-1 | tile | turbulence surface zonal velocity |
| UH | Saltwater | m s-1 | tile | turbulence surface zonal velocity |
| UI | Ogcm | m s-1 | tile | zonal velocity of surface seaice |
| UI | DataSeaIce | m s-1 | xy | zonal velocity of surface seaice |
| UIT | Physics | m s-2 | xyz | tendency of eastward wind due to turbulence |
| UKE | FVdycore | J m-1 s-1 | xy | eastward flux of atmospheric kinetic energy |
| UKE | DynCore | J m-1 s-1 | xy | eastward flux of atmospheric kinetic energy |
| UKE | ARIESg3 | J m-1 s-1 | xy | eastward flux of atmospheric kinetic energy |
| UNKNOWN | DynCore | 1 | xy | UNKNOWN |
| UNKNOWN | GMIchem | kgkg | xyz | prescribed hydrophobic black carbon from GMICHEM |
| UNKNOWN | GMIchem | kgkg | xyz | prescribed hydrophilic black carbon from GMICHEM |
| UNKNOWN | GMIchem | kgkg | xyz | prescribed dust bin 1 from GMICHEM |
| UNKNOWN | GMIchem | kgkg | xyz | prescribed dust bin 2 from GMICHEM |
| UNKNOWN | GMIchem | kgkg | xyz | prescribed dust bin 3 from GMICHEM |
| UNKNOWN | GMIchem | kgkg | xyz | prescribed dust bin 4 from GMICHEM |
| UNKNOWN | GMIchem | kgkg | xyz | prescribed hydrophobic organic carbon from GMICHEM |
| UNKNOWN | GMIchem | kgkg | xyz | prescribed hydrophilic organic carbon from GMICHEM |
| UNKNOWN | GMIchem | kgkg | xyz | prescribed sea salt bin 1 from GMICHEM |
| UNKNOWN | GMIchem | kgkg | xyz | prescribed sea salt bin 3 from GMICHEM |
| UNKNOWN | GMIchem | kgkg | xyz | prescribed sea salt bin 4 from GMICHEM |
| UNKNOWN | GMIchem | kgkg | xyz | prescribed sea salt bin 5 from GMICHEM |
| UNKNOWN | GMIchem | kgkg | xyz | prescribed sulfate from GMICHEM |
| UNKNOWN | GMIchem | kg m-3 s-1 | xyz | UNKNOWN |
| UNKNOWN | GMIchem | kg m-2 s-1 | xy | UNKNOWN |
| UNKNOWN | GMIchem | kg m-2 s-1 | xy | UNKNOWN |
| UPHI | FVdycore | J m-1 s-1 | xy | eastward flux of atmospheric potential energy |
| UPHI | DynCore | J m-1 s-1 | xy | eastward flux of atmospheric potential energy |
| UPHI | ARIESg3 | J m-1 s-1 | xy | eastward flux of atmospheric potential energy |
| UQI | FVdycore | kg m-1 s-1 | xy | eastward flux of atmospheric ice |
| UQI | DynCore | kg m-1 s-1 | xy | eastward flux of atmospheric ice |
| UQI | ARIESg3 | kg m-1 s-1 | xy | eastward flux of atmospheric ice |
| UQL | FVdycore | kg m-1 s-1 | xy | eastward flux of atmospheric liquid water |
| UQL | DynCore | kg m-1 s-1 | xy | eastward flux of atmospheric liquid water |
| UQL | ARIESg3 | kg m-1 s-1 | xy | eastward flux of atmospheric liquid water |
| UQV | FVdycore | kg m-1 s-1 | xy | eastward flux of atmospheric water vapor |
| UQV | DynCore | kg m-1 s-1 | xy | eastward flux of atmospheric water vapor |
| UQV | ARIESg3 | kg m-1 s-1 | xy | eastward flux of atmospheric water vapor |
| US | FVdycore | m s-1 | xy | surface eastward wind |
| US | DynCore | m s-1 | xy | surface eastward wind |
| US | ARIESg3 | m s-1 | xy | surface eastward wind |
| USTAR | Surface | m s-1 | xy | surface velocity scale |
| USTARI | Surface | m s-1 | xy | ice ocean friction velocity |
| UU10M | Surface | m s-1 | xy | near-surface wind speed |
| UU10MMAX | Surface | m s-1 | xy | daily maximum near-surface wind speed |
| UW | Ogcm | m s-1 | tile | zonal velocity of surface water |
| UW | DataSea | m s-1 | xy | zonal velocity of surface water |
| UX0 | Moist | m s-1 | xyz | eastward wind |
| U_CGRID | FVdycore | m s-1 | xyz | eastward wind on C-Grid |
| U_CGRID | DynCore | m s-1 | xyz | eastward wind on C-Grid |
| U_CGRID | ARIESg3 | m s-1 | xyz | eastward wind on C-Grid |
| U_DGRID | FVdycore | m s-1 | xyz | eastward wind on native D-Grid |
| U_DGRID | DynCore | m s-1 | xyz | eastward wind on native D-Grid |
| U_DGRID | ARIESg3 | m s-1 | xyz | eastward wind on native D-Grid |
| V | Gcm | |||
| V | Gcm | |||
| V | Agcm | m+2 | xy | isotropic variance of filtered topography |
| V | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| V | FVdycore | m s-1 | xyz | northward wind |
| V | DynCore | m s-1 | xyz | northward wind |
| V | ARIESg3 | m s-1 | xyz | northward wind |
| V | DatmoDyn | ms | xyz | meridional wind |
| V | Turbulence | m s-1 | xyz | northward wind |
| V | Gwd | m s-1 | xyz | northward wind |
| V | Ogcm | N m-2 | tile | northward stress at base of ice |
| V10M | Physics | kg m-2 s-1 | xy | vertically integrated odd oxygen tendency due to physics |
| V10M | Surface | m s-1 | xy | 10-meter northward wind |
| V10N | Gcm | |||
| V10N | Agcm | m+2 | xy | isotropic variance of filtered topography |
| V10N | Physics | kg m-2 s-1 | xy | vertically integrated odd oxygen tendency due to physics |
| V10N | Surface | m s-1 | xy | equivalent neutral 10-meter northward wind |
| V200 | DynCore | m s-1 | xy | northward wind at 200 hPa |
| V250 | FVdycore | m s-1 | xy | northward wind at 250 hPa |
| V250 | DynCore | m s-1 | xy | northward wind at 250 hPa |
| V250 | ARIESg3 | m s-1 | xy | northward wind at 250 hPa |
| V2M | Surface | m s-1 | xy | 2-meter northward wind |
| V500 | FVdycore | m s-1 | xy | northward wind at 500 hPa |
| V500 | DynCore | m s-1 | xy | northward wind at 500 hPa |
| V500 | ARIESg3 | m s-1 | xy | northward wind at 500 hPa |
| V50M | FVdycore | m s-1 | xy | northward wind at 50 meters |
| V50M | DynCore | m s-1 | xy | northward wind at 50 meters |
| V50M | ARIESg3 | m s-1 | xy | northward wind at 50 meters |
| V50M | Surface | m s-1 | xy | 50-meter northward wind |
| V700 | DynCore | m s-1 | xy | northward wind at 700 hPa |
| V850 | FVdycore | m s-1 | xy | northward wind at 850 hPa |
| V850 | DynCore | m s-1 | xy | northward wind at 850 hPa |
| V850 | ARIESg3 | m s-1 | xy | northward wind at 850 hPa |
| VA | Surface | m s-1 | xy | surface northward wind |
| VARFLT | Agcm | m+2 | xy | isotropic variance of filtered topography |
| VARFLT | DatmoDyn | K | xy | obs skin temperature |
| VBAR | Gwd | m s-1 | xy | northward component of mean level wind |
| VBASE | Gwd | m s-1 | xy | northward component of base level wind |
| VCPT | FVdycore | J m-1 s-1 | xy | northward flux of atmospheric enthalpy |
| VCPT | DynCore | J m-1 s-1 | xy | northward flux of atmospheric enthalpy |
| VCPT | ARIESg3 | J m-1 s-1 | xy | northward flux of atmospheric enthalpy |
| VDQDTDYN | DatmoDyn | kgkgsec | xyz | vertical tendency of specific humidity due to dynamics |
| VDTDTDYN | DatmoDyn | K sec-1 | xyz | vertical tendency of air temperature due to dynamics |
| VDTHDTDYN | DatmoDyn | K sec-1 | xyz | vertical tendency of air pot temp due to dynamics |
| VENT | Surface | m s-1 | xy | surface ventilation velocity |
| VENT | Lake | m s-1 | tile | surface ventilation velocity |
| VENT | Landice | m s-1 | tile | surface ventilation velocity |
| VENT | Catch | m s-1 | tile | surface ventilation velocity |
| VENT | Saltwater | m s-1 | tile | surface ventilation velocity |
| VFALL | GMIchem | cms | xyz | effective aerosol fall velocity |
| VFALL | GMIchem | cm s-1 | xyz | Effective aerosol fall velocities |
| VFALLICE_AN | Moist | m s-1 | xyz | autoconversion fall velocity of anvil snow |
| VFALLICE_LS | Moist | m s-1 | xyz | autoconversion fall velocity of largescale snow |
| VFALLRN_AN | Moist | m s-1 | xyz | reevaporation fall velocity of anvil rain |
| VFALLRN_CN | Moist | m s-1 | xyz | reevaporation fall velocity of convective rain |
| VFALLRN_LS | Moist | m s-1 | xyz | reevaporation fall velocity of largescale rain |
| VFALLSN_AN | Moist | m s-1 | xyz | reevaporation fall velocity of anvil snow |
| VFALLSN_CN | Moist | m s-1 | xyz | reevaporation fall velocity of convective snow |
| VFALLSN_LS | Moist | m s-1 | xyz | reevaporation fall velocity of largescale snow |
| VFALLWAT_AN | Moist | m s-1 | xyz | autoconversion fall velocity of anvil rain |
| VFALLWAT_LS | Moist | m s-1 | xyz | autoconversion fall velocity of largescale rain |
| VH | Lake | m s-1 | tile | turbulence surface meridional velocity |
| VH | Saltwater | m s-1 | tile | turbulence surface meridional velocity |
| VI | Ogcm | m s-1 | tile | meridional velocity of surface seaice |
| VI | DataSeaIce | m s-1 | xy | meridional velocity of surface seaice |
| VIT | Physics | m s-2 | xyz | tendency of northward wind due to turbulence |
| VKE | FVdycore | J m-1 s-1 | xy | northward flux of atmospheric kinetic energy |
| VKE | DynCore | J m-1 s-1 | xy | northward flux of atmospheric kinetic energy |
| VKE | ARIESg3 | J m-1 s-1 | xy | northward flux of atmospheric kinetic energy |
| VORT | DynCore | s-1 | xyz | vorticity |
| VORT200 | DynCore | m s-1 | xy | vorticity at 200 hPa |
| VORT700 | DynCore | m s-1 | xy | vorticity at 700 hPa |
| VORT850 | DynCore | m s-1 | xy | vorticity at 850 hPa |
| VPHI | FVdycore | J m-1 s-1 | xy | northward flux of atmospheric potential energy |
| VPHI | DynCore | J m-1 s-1 | xy | northward flux of atmospheric potential energy |
| VPHI | ARIESg3 | J m-1 s-1 | xy | northward flux of atmospheric potential energy |
| VQI | FVdycore | kg m-1 s-1 | xy | northward flux of atmospheric ice |
| VQI | DynCore | kg m-1 s-1 | xy | northward flux of atmospheric ice |
| VQI | ARIESg3 | kg m-1 s-1 | xy | northward flux of atmospheric ice |
| VQL | FVdycore | kg m-1 s-1 | xy | northward flux of atmospheric liquid water |
| VQL | DynCore | kg m-1 s-1 | xy | northward flux of atmospheric liquid water |
| VQL | ARIESg3 | kg m-1 s-1 | xy | northward flux of atmospheric liquid water |
| VQV | FVdycore | kg m-1 s-1 | xy | northward flux of atmospheric water vapor |
| VQV | DynCore | kg m-1 s-1 | xy | northward flux of atmospheric water vapor |
| VQV | ARIESg3 | kg m-1 s-1 | xy | northward flux of atmospheric water vapor |
| VS | FVdycore | m s-1 | xy | surface northward wind |
| VS | DynCore | m s-1 | xy | surface northward wind |
| VS | ARIESg3 | m s-1 | xy | surface northward wind |
| VSCBRV | Turbulence | m s-1 | xy | turbulent velocity scale for buoy rev |
| VSCRAD | Turbulence | m s-1 | xy | turbulent velocity scale for cooling |
| VSCSFC | Turbulence | m s-1 | xy | turbulent velocity scale for sfc |
| VW | Ogcm | m s-1 | tile | meridional velocity of surface water |
| VW | DataSea | m s-1 | xy | meridional velocity of surface water |
| VX0 | Moist | m s-1 | xyz | northward wind |
| V_CGRID | FVdycore | m s-1 | xyz | northward wind on C-Grid |
| V_CGRID | DynCore | m s-1 | xyz | northward wind on C-Grid |
| V_CGRID | ARIESg3 | m s-1 | xyz | northward wind on C-Grid |
| V_DGRID | FVdycore | m s-1 | xyz | northward wind on native D-Grid |
| V_DGRID | DynCore | m s-1 | xyz | northward wind on native D-Grid |
| V_DGRID | ARIESg3 | m s-1 | xyz | northward wind on native D-Grid |
| W | DynCore | m sec-1 | xyz | vertical velocity |
| W10 | DynCore | m s-1 | xy | w at 10 hPa |
| W200 | DynCore | m s-1 | xy | w at 200 hPa |
| W500 | DynCore | m s-1 | xy | w at 500 hPa |
| W850 | DynCore | m s-1 | xy | w at 850 hPa |
| WAT10CM | Surface | kg m-2 | xy | soil moisture in Upper 10cm |
| WAT10CM | Catch | kg m-2 | tile | soil moisture in Upper 10cm |
| WATERFLUX | Surface | kg m-2 s-1 | xy | FRESHWATER flux bw saltwater ocean |
| WATSOI | Surface | kg m-2 | xy | total soil moisture |
| WATSOI | Catch | kg m-2 | tile | totoal soil moisture |
| WCPR | Surface | m-3 m-3 | xy | water profile |
| WCPR | Catch | m3 m-3 | tile | water ave prof |
| WCRZ | Surface | m-3 m-3 | xy | water root zone |
| WCRZ | Catch | m3 m-3 | tile | water root zone |
| WCSF | Surface | m-3 m-3 | xy | water surface layer |
| WCSF | Catch | m3 m-3 | tile | water surface layer |
| WEBRV | Turbulence | m s-1 | xy | entrainment velocity from buoy rev |
| WERAD | Turbulence | m s-1 | xy | entrainment velocity from radiation |
| WESFC | Turbulence | m s-1 | xy | entrainment velocity from surface plume |
| WESNN1 | Surface | kg m-2 | xy | snow mass layer 1 |
| WESNN2 | Surface | kg m-2 | xy | snow mass layer 2 |
| WESNN3 | Surface | kg m-2 | xy | snow mass layer 3 |
| WET1 | Gcm | |||
| WET1 | Agcm | m+2 | xy | isotropic variance of filtered topography |
| WET1 | Physics | kg m-2 s-1 | xy | vertically integrated odd oxygen tendency due to physics |
| WET1 | Surface | 1 | xy | surface soil wetness |
| WET1 | Catch | 1 | tile | surface soil wetness |
| WET2 | Surface | 1 | xy | root zone soil wetness |
| WET2 | Catch | 1 | tile | root zone soil wetness |
| WET3 | Surface | 1 | xy | ave prof soil moisture |
| WET3 | Catch | 1 | tile | ave prof soil moisture |
| WRKT | FVdycore | W m-2 | xy | work done by atmosphere at top |
| WRKT | DynCore | W m-2 | xy | work done by atmosphere at top |
| WRKT | ARIESg3 | W m-2 | xy | work done by atmosphere at top |
| WTOT | DatmoDyn | m s-1 | xyz | total vertical velocity |
| WWTG | DatmoDyn | m s-1 | xyz | weak T-gradient compensating W |
| Z | Gcm | |||
| Z | Ogcm | N m-2 | tile | northward stress at base of ice |
| Z0 | Gcm | |||
| Z0 | Agcm | m+2 | xy | isotropic variance of filtered topography |
| Z0 | Physics | kg m-2 s-1 | xy | vertically integrated odd oxygen tendency due to physics |
| Z0 | Surface | m | xy | surface roughness |
| Z0 | Lake | m | tile | surface roughness |
| Z0 | Landice | m | tile | surface roughness |
| Z0 | Catch | m | tile | surface roughness |
| Z0 | Saltwater | m | tile | surface roughness |
| Z0H | Surface | m | xy | surface roughness for heat |
| Z0H | Lake | m | tile | surface roughness for heat |
| Z0H | Landice | m | tile | surface roughness for heat |
| Z0H | Catch | m | tile | surface roughness for heat |
| Z0H | Saltwater | m | tile | surface roughness for heat |
| Z2CH | Surface | m | xy | canopy height |
| Z2CH | Vegdyn | m | tile | canopy height |
| Z300 | DynCore | m | xy | geopotential height at 300 hPa |
| Z500 | DynCore | m | xy | geopotential height at 500 hPa |
| Z700 | DynCore | m | xy | geopotential height at 700 hPa |
| ZCBL | Moist | m | xy | height of cloud base layer |
| ZCLD | Turbulence | m | xy | pbltop cloud depth LOCK |
| ZCLDTOP | Turbulence | m | xy | pbltop cloud top height LOCK |
| ZL | FVdycore | m | xyz | mid layer heights |
| ZL | DynCore | m | xyz | mid layer heights |
| ZL | ARIESg3 | m | xyz | mid layer heights |
| ZLCL | Moist | m | xy | lifting condensation level |
| ZLE | Superdyn | Pa K s-1 | xyz | delta-p weighted temperature tendency |
| ZLE | FVdycore | m | xyz | edge heights |
| ZLE | DynCore | m | xyz | edge heights |
| ZLE | ARIESg3 | m | xyz | edge heights |
| ZLE | DatmoDyn | m | xyz | Geop. height at the edges |
| ZLFC | Moist | m | xy | level of free convection |
| ZPBLCN | Moist | m | xy | boundary layer depth |
| ZRADBS | Turbulence | m | xy | hght of base for radbrv plume LOCK |
| ZRADML | Turbulence | m | xy | depth for radbrv plume LOCK |
| ZSML | Turbulence | m | xy | pbltop height for sfc plume LOCK |
List of GEOS-5 [EX] State variables
__FORCETOC__
Sorted 337 states by SHORT name
| Name | Component | Units | Dim | Long name |
|---|---|---|---|---|
| A3O2 | GMIchem | molmol | xyz | Primary RO2 (C3H7O2) from propane |
| ACET | GMIchem | molmol | xyz | Acetone |
| ACTA | GMIchem | molmol | xyz | Acetic acid (C2H4O2) |
| AERO | PChem | kg kg-1 | xyz | aerosol mass mixing ratios |
| AEROTEND | PChem | kg kg-1 s-1 | xyz | aerosol mass mixing ratio tendencies |
| AK | FVdycore | Pa | z | hybrid sigma pressure a |
| AK | DynCore | Pa | z | hybrid sigma pressure a |
| AK | ARIESg3 | Pa | z | hybrid sigma pressure a |
| AKQ | Turbulence | 1 | xyz | matrix diagonal ahat for moisture |
| AKS | Turbulence | 1 | xyz | matrix diagonal ahat for scalars |
| AKV | Turbulence | 1 | xyz | matrix diagonal ahat for winds |
| ALD2 | GMIchem | molmol | xyz | Acetaldehyde (C2H4O) |
| ALK4 | GMIchem | molmol | xyz | C45 alkanes (C4H10) |
| AOA | PChem | days | xyz | age of air |
| ARA1 | Catch | m+2 kg-1 | tile | shape param 1 |
| ARA2 | Catch | 1 | tile | shape param 2 |
| ARA3 | Catch | m+2 kg-1 | tile | shape param 3 |
| ARA4 | Catch | 1 | tile | shape param 4 |
| ARS1 | Catch | m+2 kg-1 | tile | wetness param 1 |
| ARS2 | Catch | m+2 kg-1 | tile | wetness param 2 |
| ARS3 | Catch | m+4 kg-2 | tile | wetness param 3 |
| ARW1 | Catch | m+2 kg-1 | tile | min theta param 1 |
| ARW2 | Catch | m+2 kg-1 | tile | min theta param 2 |
| ARW3 | Catch | m+4 kg-2 | tile | min theta param 3 |
| ARW4 | Catch | 1 | tile | min theta param 4 |
| ATAU | Catch | 1 | tile | water transfer param 5 |
| ATO2 | GMIchem | molmol | xyz | RO2 from acetone (C3H6O3) |
| B3O2 | GMIchem | molmol | xyz | Secondary RO2 (C3H7O2) from propane |
| BEE | Catch | 1 | tile | clapp hornberger b |
| BF1 | Catch | kg m-4 | tile | topo baseflow param 1 |
| BF2 | Catch | m | tile | topo baseflow param 2 |
| BF3 | Catch | log(m) | tile | topo baseflow param 3 |
| BK | FVdycore | 1 | z | hybrid sigma pressure b |
| BK | DynCore | 1 | z | hybrid sigma pressure b |
| BK | ARIESg3 | 1 | z | hybrid sigma pressure b |
| BKQ | Turbulence | 1 | xyz | matrix diagonal bhat for moisture |
| BKS | Turbulence | 1 | xyz | matrix diagonal bhat for scalars |
| BKV | Turbulence | 1 | xyz | matrix diagonal bhat for winds |
| BTAU | Catch | 1 | tile | water transfer param 6 |
| Br | GMIchem | molmol | xyz | Ground state atomic bromine (2P32) |
| BrCl | GMIchem | molmol | xyz | Bromine chloride |
| BrO | GMIchem | molmol | xyz | Bromine monoxide radical |
| BrONO2 | GMIchem | molmol | xyz | Bromine nitrate |
| C2H6 | GMIchem | molmol | xyz | Ethane |
| C3H8 | GMIchem | molmol | xyz | Propane |
| CAPAC | Catch | kg m-2 | tile | interception reservoir capac |
| CATDEF | Catch | kg m-2 | tile | catchment deficit |
| CCl4 | GMIchem | molmol | xyz | Carbon tetrachloride |
| CDCR1 | Catch | kg m-2 | tile | moisture threshold |
| CDCR2 | Catch | kg m-2 | tile | max water content |
| CF2Br2 | GMIchem | molmol | xyz | Halon 1202 |
| CF2Cl2 | GMIchem | molmol | xyz | CFC12 (CF2Cl2) |
| CF2ClBr | GMIchem | molmol | xyz | Halon 1211 |
| CF3Br | GMIchem | molmol | xyz | Halon 1301 |
| CFC11 | PChem | mol mol-1 | xyz | CFC11 (CCl3F) volume mixing ratio |
| CFC113 | GMIchem | molmol | xyz | CFC113 (C2Cl3F3) |
| CFC114 | GMIchem | molmol | xyz | CFC114 (C2Cl2F4) |
| CFC115 | GMIchem | molmol | xyz | CFC115 (C2ClF5) |
| CFC12 | PChem | mol mol-1 | xyz | CFC12 (CCl2F2) volume mixing ratio |
| CFCl3 | GMIchem | molmol | xyz | CFC11 (CFCl3) |
| CH | Lake | kg m-2 s-1 | tile2 | surface heat exchange coefficient |
| CH | Landice | kg m-2 s-1 | tile2 | surface heat exchange coefficient |
| CH | Catch | kg m-2 s-1 | tile2 | surface heat exchange coefficient |
| CH | Saltwater | kg m-2 s-1 | tile2 | surface heat exchange coefficient |
| CH2O | GMIchem | molmol | xyz | Formaldehyde |
| CH3Br | GMIchem | molmol | xyz | Methyl bromide |
| CH3CCl3 | GMIchem | molmol | xyz | Methyl chloroform |
| CH3Cl | GMIchem | molmol | xyz | Methyl chloride |
| CH4 | PChem | mol mol-1 | xyz | methane volume mixing ratio |
| CH4 | GMIchem | molmol | xyz | Methane |
| CHEM_TRACERS | Chem | X | chemistry friendly tracers | |
| CKQ | Turbulence | 1 | xyz | matrix diagonal c for moisture |
| CKS | Turbulence | 1 | xyz | matrix diagonal c for scalars |
| CKV | Turbulence | 1 | xyz | matrix diagonal c for winds |
| CLCN | Moist | 1 | xyz | convective cloud area fraction |
| CLLS | Moist | 1 | xyz | large scale cloud area fraction |
| CM | Surface | kg m-2 s-1 | xy | surface exchange coefficient for momentum |
| CM | Lake | kg m-2 s-1 | tile2 | surface momentum exchange coefficient |
| CM | Landice | kg m-2 s-1 | tile2 | surface momentum exchange coefficient |
| CM | Catch | kg m-2 s-1 | tile2 | surface momentum exchange coefficient |
| CM | Saltwater | kg m-2 s-1 | tile2 | surface momentum exchange coefficient |
| CN | Surface | 1 | xy | surface neutral drag coefficient |
| CO | GMIchem | molmol | xyz | Carbon monoxyde |
| COND | Catch | m s-1 | tile | sfc sat hydraulic conduct |
| CQ | Surface | kg m-2 s-1 | xy | surface exchange coefficient for moisture |
| CQ | Lake | kg m-2 s-1 | tile2 | surface moisture exchange coefficient |
| CQ | Landice | kg m-2 s-1 | tile2 | surface moisture exchange coefficient |
| CQ | Catch | kg m-2 s-1 | tile2 | surface moisture exchange coffiecient |
| CQ | Saltwater | kg m-2 s-1 | tile2 | surface moisture exchange coefficient |
| CT | Surface | kg m-2 s-1 | xy | surface exchange coefficient for heat |
| Cl | GMIchem | molmol | xyz | Ground state atomic chlorine (2P32) |
| Cl2 | GMIchem | molmol | xyz | Molecular chlorine |
| Cl2O2 | GMIchem | molmol | xyz | Chlorine peroxide |
| ClO | GMIchem | molmol | xyz | Chlorine monoxide radical |
| ClONO2 | GMIchem | molmol | xyz | Chlorine nitrate |
| D0 | Surface | m | xy | zero plane displacement height |
| DFDTS | Irrad | W m-2 K-1 | xyz | sensitivity of net downward longwave flux in air to surface temperature |
| DFDTSC | Irrad | W m-2 K-1 | xyz | sensitivity of net downward longwave flux in air to surface temperature for clear sky |
| DFNIRN | Solar | 1 | xy | normalized surface downwelling nearinfrared diffuse flux |
| DFPARN | Solar | 1 | xy | normalized surface downwelling par diffuse flux |
| DFUVRN | Solar | 1 | xy | normalized surface downwelling ultraviolet diffuse flux |
| DKQ | Turbulence | s-1 | xyz | sensitivity of tendency to surface value for moisture |
| DKS | Turbulence | s-1 | xyz | sensitivity of tendency to surface value for scalars |
| DKV | Turbulence | s-1 | xyz | sensitivity of tendency to surface value for winds |
| DO3DT | Agcm | ppmv s-1 | xyz | ozone bias tendency |
| DPEDT | Agcm | Pa s-1 | xyz | edge pressure bias tendency |
| DQVDT | Agcm | kg kg-1 s-1 | xyz | specific humidity bias tendency |
| DRNIRN | Solar | 1 | xy | normalized surface downwelling nearinfrared beam flux |
| DRPARN | Solar | 1 | xy | normalized surface downwelling par beam flux |
| DRUVRN | Solar | 1 | xy | normalized surface downwelling ultraviolet beam flux |
| DTDT | Agcm | K s-1 | xyz | temperature bias tendency |
| DUDT | Agcm | m s-2 | xyz | eastward wind bias tendency |
| DVDT | Agcm | m s-2 | xyz | northward wind bias tendency |
| DZ | DynCore | m | xyz | height thickness |
| EKV | Turbulence | Pa s-1 | xyz | momentum mixing factor |
| EOH | GMIchem | molmol | xyz | Ethanol |
| ETO2 | GMIchem | molmol | xyz | Ethylperoxy radical (C2H5O2) |
| ETP | GMIchem | molmol | xyz | Ethylhydroperoxide |
| FKV | Turbulence | Pa s-1 | xyz | topographic roughness factor |
| FLA | Irrad | W m-2 | xyz | net downward longwave flux in air for clear sky and no aerosol |
| FLAD | Irrad | W m-2 | xyz | downward longwave flux in air for clear sky and no aerosol |
| FLAU | Irrad | W m-2 | xyz | upward longwave flux in air for clear sky and no aerosol |
| FLC | Irrad | W m-2 | xyz | net downward longwave flux in air for clear sky(INTERNAL) |
| FLCD | Irrad | W m-2 | xyz | downward longwave flux in air for clear sky |
| FLCU | Irrad | W m-2 | xyz | upward longwave flux in air for clear sky |
| FLX | Irrad | W m-2 | xyz | net downward longwave flux in air |
| FLXD | Irrad | W m-2 | xyz | downward longwave flux in air |
| FLXU | Irrad | W m-2 | xyz | upward longwave flux in air |
| FR | Lake | 1 | tile2 | ice fraction |
| FR | Landice | 1 | tile2 | ice fraction |
| FR | Catch | 1 | tile2 | subtile fractions |
| FSCDN | Solar | 1 | xyz | normalized downward shortwave flux in air assuming clear sky |
| FSCDNAN | Solar | 1 | xyz | normalized downward shortwave flux in air assuming clear sky and no aerosol |
| FSCN | Solar | 1 | xyz | normalized net downward shortwave flux in air assuming clear sky |
| FSCNAN | Solar | 1 | xyz | normalized net downward shortwave flux in air assuming clear sky and no aerosol |
| FSCUN | Solar | 1 | xyz | normalized upward shortwave flux in air assuming clear sky |
| FSCUNAN | Solar | 1 | xyz | normalized upward shortwave flux in air assuming clear sky and no aerosol |
| FSWDN | Solar | 1 | xyz | normalized downward shortwave flux in air |
| FSWDNAN | Solar | 1 | xyz | normalized downward shortwave flux in air assuming no aerosol |
| FSWN | Solar | 1 | xyz | normalized net downward shortwave flux in air |
| FSWNAN | Solar | 1 | xyz | normalized net downward shortwave flux in air assuming no aerosol |
| FSWUN | Solar | 1 | xyz | normalized upward shortwave flux in air |
| FSWUNAN | Solar | 1 | xyz | normalized upward shortwave flux in air assuming no aerosol |
| GCO3 | GMIchem | molmol | xyz | Hydroxy peroxyacetyl radical (C2H3O4) |
| GHTCNT1 | Catch | J m-2 | tile | soil heat content layer 1 |
| GHTCNT2 | Catch | J_m-2 | tile | soil heat content layer 2 |
| GHTCNT3 | Catch | J m-2 | tile | soil heat content layer 3 |
| GHTCNT4 | Catch | J m-2 | tile | soil heat content layer 4 |
| GHTCNT5 | Catch | J m-2 | tile | soil heat content layer 5 |
| GHTCNT6 | Catch | J m-2 | tile | soil heat content layer 6 |
| GLYC | GMIchem | molmol | xyz | Glycoaldehyde (Hydroxyacetaldehyde C2H4O2) |
| GLYX | GMIchem | molmol | xyz | Glyoxal (2CHO) |
| GNU | Catch | m-1 | tile | vertical transmissivity |
| GP | GMIchem | molmol | xyz | Peroxide (C2H4O4) from GCO3 |
| GPAN | GMIchem | molmol | xyz | Peroxyacylnitrate (C2H3O6) |
| GRN_NEXT | Vegdyn | 1 | tile | greeness fraction next |
| GRN_PREV | Vegdyn | 1 | tile | greeness fraction prev |
| H | GMIchem | molmol | xyz | Ground state atomic hydrogen (2S) |
| H2 | GMIchem | molmol | xyz | Molecular hydrogen |
| H2402 | GMIchem | molmol | xyz | Halon 24O2 (C2Br2F4) |
| H2O2 | GMIchem | molmol | xyz | Hydrogen peroxide |
| H2OCOND | GMIchem | molmol | xyz | Condensed water |
| H2OJETS | GMIchem | molmol | xyz | Aircraft-emitted water |
| HAC | GMIchem | molmol | xyz | Hydroxyacetone (C3H6O2) |
| HBr | GMIchem | molmol | xyz | Hydrogen bromide |
| HCFC141b | GMIchem | molmol | xyz | HCFC141b (C2Cl2FH3) |
| HCFC142b | GMIchem | molmol | xyz | HCFC142b (C2ClF2H3) |
| HCFC22 | PChem | mol mol-1 | xyz | HCFC22 (CHClF2) volume mixing ratio |
| HCFC22 | GMIchem | molmol | xyz | HCFC22 (CClF2H) |
| HCOOH | GMIchem | molmol | xyz | Formic acid (CH3O2) |
| HCl | GMIchem | molmol | xyz | Hydrochloric acid |
| HNO2 | GMIchem | molmol | xyz | Nitrous acid |
| HNO3 | GMIchem | molmol | xyz | Nitric acid |
| HNO3COND | GMIchem | molmol | xyz | Condensed nitric acid |
| HNO4 | GMIchem | molmol | xyz | Pernitric acid |
| HO2 | GMIchem | molmol | xyz | Perhydroxyl radical |
| HOBr | GMIchem | molmol | xyz | Hypobromous acid |
| HOCl | GMIchem | molmol | xyz | Hypochlorous acid |
| HSKINI | Saltwater | kg m-2 | tile | ice skin layer mass |
| HSKINW | Saltwater | kg m-2 | tile | water skin layer mass |
| HTSNNN1 | Catch | J m-2 | tile | heat content snow layer 1 |
| HTSNNN2 | Catch | J m-2 | tile | heat content snow layer 2 |
| HTSNNN3 | Catch | J m-2 | tile | heat content snow layer 3 |
| IALD | GMIchem | molmol | xyz | Hydroxy carbonyl alkenes (C5H8O2) from isoprene |
| IAO2 | GMIchem | molmol | xyz | RO2 (C5H9O8) from isoprene oxidation products |
| IAP | GMIchem | molmol | xyz | Peroxide (C5H10O5) from IAO2 |
| INO2 | GMIchem | molmol | xyz | RO2 (C5H8O3N) from ISOP+NO3 |
| INPN | GMIchem | molmol | xyz | Peroxide (C5H8O6N2) from INO2 |
| ISN1 | GMIchem | molmol | xyz | RO2 (C4H7O4N) from ISN2 |
| ISNP | GMIchem | molmol | xyz | Peroxide (C4H7O4N) from ISN1 |
| ISOP | GMIchem | molmol | xyz | Isoprene |
| ITY | Vegdyn | 1 | tile | vegetation type |
| ITY | Catch | 1 | tile | vegetation type |
| KO2 | GMIchem | molmol | xyz | RO2 (C4H7O3) from C3 ketones |
| KPAR_NEXT | Orad | m-1 | xy | KPAR next |
| KPAR_PREV | Orad | m-1 | xy | KPAR previous |
| LAI_NEXT | Vegdyn | 1 | tile | leaf area index next |
| LAI_PREV | Vegdyn | 1 | tile | leaf area index prev |
| MACR | GMIchem | molmol | xyz | Methacrolein (C4H6O) |
| MAN2 | GMIchem | molmol | xyz | RO2 (C4H6O6N) from MACR+NO3 |
| MAO3 | GMIchem | molmol | xyz | Peroxyacyl (C4H5O3) from MVK+MACR |
| MAOP | GMIchem | molmol | xyz | Peroxide (C4H6O3) from MAO3 |
| MAP | GMIchem | molmol | xyz | Peroxyacetic acid (C2H4O3) |
| MCO3 | GMIchem | molmol | xyz | Peroxyacetyl radical (C2H3O3) |
| MEK | GMIchem | molmol | xyz | Methyl ethyl ketone (C4H8O) |
| MGLY | GMIchem | molmol | xyz | Methylglyoxal (C3H4O2) |
| MO2 | GMIchem | molmol | xyz | Methylperoxy radical (CH3O2) |
| MOH | GMIchem | molmol | xyz | Methanol |
| MP | GMIchem | molmol | xyz | Methyl hydroperoxide |
| MRO2 | GMIchem | molmol | xyz | RO2 (C4H7O4) from MACR+OH |
| MRP | GMIchem | molmol | xyz | Peroxide (C4H8O4) from MRO2 |
| MVK | GMIchem | molmol | xyz | Methyl vinyl ketone (C4H6O) |
| MVN2 | GMIchem | molmol | xyz | C4H6O4N |
| N | GMIchem | molmol | xyz | Ground state atomic nitrogen |
| N2 | GMIchem | m^-3 | xyz | Molecular nitrogen |
| N2O | PChem | mol mol-1 | xyz | nitrous oxide volume mixing ratio |
| N2O | GMIchem | molmol | xyz | Nitrous oxide |
| N2O5 | GMIchem | molmol | xyz | Dinitrogen pentoxide |
| NO | GMIchem | molmol | xyz | Nitric oxide |
| NO2 | GMIchem | molmol | xyz | Nitrogen dioxide |
| NO3 | GMIchem | molmol | xyz | Nitrogen trixide |
| NUMDENS | GMIchem | m^-3 | xyz | Total number density |
| O | GMIchem | molmol | xyz | Ground state atomic oxygen (3P) |
| O1D | GMIchem | molmol | xyz | First excited state of atomic oxygen (1D) |
| O2 | GMIchem | m^-3 | xyz | Molecular oxygen |
| O3 | GMIchem | molmol | xyz | Ozone |
| OClO | GMIchem | molmol | xyz | Symmetrical chlorine dioxide |
| OH | GMIchem | molmol | xyz | Hydroxyl radical |
| OM | DatmoDyn | Pas | xyz | pressure velocity |
| OX | PChem | mol mol-1 | xyz | odd oxygen volume mixing ratio |
| PAN | GMIchem | molmol | xyz | Peroxyacetyl nitrate (C2H3NO5) |
| PE | FVdycore | Pa | xyz | air pressure |
| PE | DynCore | Pa | xyz | air pressure |
| PE | ARIESg3 | Pa | xyz | air pressure |
| PKZ | FVdycore | Pa$^\kappa$ | xyz | pressure to kappa |
| PKZ | DynCore | Pa$^\kappa$ | xyz | pressure to kappa |
| PKZ | ARIESg3 | Pa$^\kappa$ | xyz | pressure to kappa |
| PLE | DatmoDyn | Pascals | xyz | Pressure at the edges |
| PMN | GMIchem | molmol | xyz | Peroxymethacryloyl nitrate (C4H5O5N) |
| PO2 | GMIchem | molmol | xyz | RO2 (C3H7O3) from propene |
| POROS | Catch | 1 | tile | soil porosity |
| PP | GMIchem | molmol | xyz | Peroxide (C3H8O3) from PO2 |
| PPN | GMIchem | molmol | xyz | Prexypropionyl nitrate (C3H5O5N) |
| PREF | DatmoDyn | Pa | z | reference air pressure |
| PRN1 | GMIchem | molmol | xyz | RO2 (C3H5O5N) from propene+NO3 |
| PRPE | GMIchem | molmol | xyz | Propene (C3H6) |
| PRPN | GMIchem | molmol | xyz | Peroxide (C3H6O3N) from PRN1 |
| PSIS | Catch | m | tile | saturated matric potential |
| PT | FVdycore | K Pa$^{-\kappa}$ | xyz | scaled potential temperature |
| PT | DynCore | K Pa$^{-\kappa}$ | xyz | scaled potential temperature |
| PT | ARIESg3 | K Pa$^{-\kappa}$ | xyz | scaled potential temperature |
| Q | Moist | kg kg-1 | xyz | specific humidity |
| QC | Catch | kg kg-1 | tile2 | canopy specific humidity |
| QHAT | Surface | kg kg-1 | xy | effective surface specific humidity |
| QICN | Moist | kg kg-1 | xyz | mass fraction of convective cloud ice water |
| QILS | Moist | kg kg-1 | xyz | mass fraction of large scale cloud ice water |
| QLCN | Moist | kg kg-1 | xyz | mass fraction of convective cloud liquid water |
| QLLS | Moist | kg kg-1 | xyz | mass fraction of large scale cloud liquid water |
| QS | Surface | kg kg-1 | xy | surface specific humidity |
| QS | Lake | kg kg-1 | tile2 | surface specific humidity |
| QS | Landice | kg kg-1 | tile2 | surface specific humidity |
| QS | Saltwater | kg kg-1 | tile2 | surface specific humidity |
| R4N1 | GMIchem | molmol | xyz | RO2 (C4H9O3N) from R4N2 |
| R4N2 | GMIchem | molmol | xyz | C4-C5 alkylnitrates (C4H9O3N) |
| R4O2 | GMIchem | molmol | xyz | RO2 (C4H9O2) from ALK4 |
| R4P | GMIchem | molmol | xyz | Peroxide (C4H10O2) from R4O2 |
| RA3P | GMIchem | molmol | xyz | Peroxypropyl alcohol (C3H8O2) from A3O2 |
| RB3P | GMIchem | molmol | xyz | Peroxide from B3O2 |
| RCHO | GMIchem | molmol | xyz | C2 aldehydes (C3H6O) |
| RCO3 | GMIchem | molmol | xyz | Peroxypropionyl radical (C3H5O3) |
| RCOOH | GMIchem | molmol | xyz | C2 organic acids |
| RHOS | Surface | kg m-3 | xy | air density at surface |
| RIO1 | GMIchem | molmol | xyz | RO2 (C5H9O3) from isoprene oxidation products |
| RIO2 | GMIchem | molmol | xyz | RO2 (C5H9O3) from isoprene |
| RIP | GMIchem | molmol | xyz | Peroxide (C5H10O3) from RIO2 |
| ROH | GMIchem | molmol | xyz | C2 alcohols |
| RP | GMIchem | molmol | xyz | Methacrolein peroxy acid (C4H6O3) |
| RZEXC | Catch | kg m-2 | tile | root zone excess |
| SFCEM | Irrad | W m-2 | xy | longwave flux emitted from surface |
| SINC | Turbulence | m+2 s-3 | xyz | turbulence tendency for dry static energy |
| SNDZN1 | Catch | m | tile | snow depth layer 1 |
| SNDZN2 | Catch | m | tile | snow depth layer 2 |
| SNDZN3 | Catch | m | tile | snow depth layer 3 |
| SRFEXC | Catch | kg m-2 | tile | surface excess |
| SSKINI | Saltwater | psu | tile | ice skin salinity |
| SSKINW | Saltwater | psu | tile | water skin salinity |
| T | DatmoDyn | K | xyz | air temperature |
| TC | Catch | K | tile2 | canopy temperature |
| THAT | Surface | K | xy | effective surface skin temperature |
| TS | Surface | K | xy | surface skin temperature |
| TS | Lake | K | tile2 | surface skin temperature |
| TS | Landice | K | tile2 | surface skin temperature |
| TS | Irrad | K | xy | surface temperature |
| TSA1 | Catch | 1 | tile | water transfer param 1 |
| TSA2 | Catch | 1 | tile | water transfer param 2 |
| TSB1 | Catch | 1 | tile | water transfer param 3 |
| TSB2 | Catch | 1 | tile | water transfer param 4 |
| TSKINI | Saltwater | K | tile | ice skin temperature |
| TSKINW | Saltwater | K | tile | water skin temperature |
| TSURF | Catch | K | tile | mean catchment temp incl snw |
| U | FVdycore | m s-1 | xyz | eastward wind |
| U | DynCore | m s-1 | xyz | eastward wind |
| U | ARIESg3 | m s-1 | xyz | eastward wind |
| U | DatmoDyn | ms | xyz | Zonal wind |
| UHAT | Surface | m s-1 | xy | effective surface eastward velocity |
| UNKNOWN | GOCART | r%vunits(n) | xyz | r%vtitle(n) |
| UNKNOWN | CARMAchem | kgkg | xyz | UNKNOWN |
| UNKNOWN | CARMAchem | kgkg | xyz | UNKNOWN |
| UNKNOWN | GMIchem | UNKNOWN | xyz | UNKNOWN |
| UNKNOWN | GMIchem | UNKNOWN | xyz | UNKNOWN |
| UNKNOWN | StratChem | UNKNOWN | xyz | UNKNOWN |
| UNKNOWN | StratChem | UNKNOWN | xyz | UNKNOWN |
| UNKNOWN | mkiau | PA | xy | surface pressure |
| UNKNOWN | mkiau | PA | xyz | surface pressure |
| UNKNOWN | mkiau | ms | xyz | eastward wind |
| UNKNOWN | mkiau | ms | xyz | northward wind |
| UNKNOWN | mkiau | K | xyz | potential temperature |
| UNKNOWN | mkiau | NA | xyz | specific humidity |
| UNKNOWN | mkiau | ppmv | xyz | ozone |
| V | FVdycore | m s-1 | xyz | northward wind |
| V | DynCore | m s-1 | xyz | northward wind |
| V | ARIESg3 | m s-1 | xyz | northward wind |
| V | DatmoDyn | ms | xyz | meridional wind |
| VGWMAX | Catch | kg m-2 | tile | max rootzone water content |
| VHAT | Surface | m s-1 | xy | effective surface northward velocity |
| VRO2 | GMIchem | molmol | xyz | RO2 (C4H7O4) from MVK+OH |
| VRP | GMIchem | molmol | xyz | Peroxide (C4H8O4) from VRO2 |
| W | DynCore | m s-1 | xyz | vertical velocity |
| WESNN1 | Catch | kg m-2 | tile | snow mass layer 1 |
| WESNN2 | Catch | kg m-2 | tile | snow mass layer 2 |
| WESNN3 | Catch | kg m-2 | tile | snow mass layer 3 |
| WPWET | Catch | 1 | tile | wetness at wilting point |
| WW | Catch | m+2 s-2 | tile2 | vertical velocity scale squared |
| WW | Saltwater | m+2 s-2 | tile2 | vertical velocity scale squared |
| Z0 | Saltwater | m | tile2 | aerodynamic roughness |
| ZLE | Turbulence | m | xyz | geopotential height above surface |
| ZPBL | Turbulence | m | xy | planetary boundary layer height |
List of GEOS-5 [IN] State variables