Skip to content

References

John Wilkin edited this page Jun 18, 2026 · 2 revisions
  1. Aristizábal Vargas, M.F., Kim, H.S., Le Hénaff, M., Miles, T., Glenn, S. and Goni, G., 2024. Evaluation of the ocean component on different coupled hurricane forecasting models using upper-ocean metrics relevant to air-sea heat fluxes during Hurricane Dorian (2019). Frontiers in Earth Science, 12, p.1342390.

  2. Copernicus Marine Service Marine Data Store, Global Ocean Physics Analysis and Forecast, GLOBAL_ANALYSISFORECAST_PHY_001_024, https://doi.org/10.48670/moi-00016

  3. Edson, J.B., Jampana, V., Weller, R.A., Bigorre, S.P., Plueddemann, A.J., Fairall, C.W., Miller, S.D., Mahrt, L., Vickers, D. and Hersbach, H., 2013. On the exchange of momentum over the open ocean. Journal of Physical Oceanography, 43, 1589-1610.

  4. Egbert, G.D. and Erofeeva, S.Y., 2002. Efficient inverse modeling of barotropic ocean tides. Journal of Atmospheric and Oceanic technology, 19,183-204.

  5. GEBCO Bathymetric Compilation Group, 2023. The GEBCO_2023 Grid - a continuous terrain model of the global oceans and land. NERC EDS British Oceanographic Data Centre NOC. doi:10.5285/f98b053b-0cbc-6c23-e053-6c86abc0af7b, https://www.gebco.net/data-products/gridded-bathymetry-data/gebco2023-grid

  6. Leipper, D. F., and D. Volgenau, 1972: Hurricane heat potential of the Gulf of Mexico. Journal of Physical Oceanography, 2 (3), 218–224.

  7. Harrigan, S., Zsoter, E., Alfieri, L., Prudhomme, C., Salamon, P., Wetterhall, F., Barnard, C., Cloke, H. and Pappenberger, F., 2020. GloFAS-ERA5 operational global river discharge reanalysis 1979Ðpresent. Earth System Science Data, 12(3), 2043-2060., https://doi.org/10.5194/essd-12-2043-2020

  8. Weaver, A. and Courtier, P., 2001. Correlation modelling on the sphere using a generalized diffusion equation. Quarterly Journal of the Royal Meteorological Society, 127,1815-1846.

Clone this wiki locally