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gimliuses.bib
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% Encoding: UTF-8
@Article{Coscia2011,
author = {Coscia,I. and Greenhalgh, S. and Linde, N. and Doetsch, J. and Marescot, L. and G{\"u}nther, T. and Green, A.},
journal = {Geophysics},
title = {3{D} crosshole apparent resistivity static inversion and monitoring of a coupled river-aquifer system},
year = {2011},
number = {2},
pages = {G49-59},
volume = {76},
doi = {10.1190/1.3553003},
timestamp = {2010.08.09},
}
@Article{Guenther2012,
author = {G{\"u}nther, T. and M{\"u}ller-Petke, M.},
journal = {Hydrology and Earth System Sciences},
title = {{H}ydraulic properties at the {N}orth {S}ea island of {B}orkum derived from joint inversion of magnetic resonance and electrical resistivity soundings},
year = {2012},
number = {9},
pages = {3279--3291},
volume = {16},
doi = {10.5194/hess-16-3279-2012},
timestamp = {2016.09.14},
}
@Article{Costabel2014,
author = {Costabel, S. and G{\"u}nther, T.},
journal = {Vadose Zone Journal},
title = {{N}oninvasive {E}stimation of {W}ater {R}etention {P}arameters by {O}bserving the {C}apillary {F}ringe with {M}agnetic {R}esonance {S}ounding},
year = {2014},
number = {6},
pages = {14},
volume = {13},
doi = {10.2136/vzj2013.09.0163},
timestamp = {2014.06.06},
}
@Article{Wagner2015,
author = {Wagner, F.M. and G{\"u}nther, T. and Schmidt-Hattenberger, C. and Maurer, H.},
journal = {Geophysics},
title = {{C}onstructive optimization of electrode locations for target-focused resistivity monitoring},
year = {2015},
number = {2},
pages = {E29--E40},
volume = {80},
doi = {10.1190/geo2014-0214.1},
timestamp = {2015.01.14},
}
@Article{Loewer2016,
author = {Loewer, M. and Igel, J. and Wagner, N.},
journal = {{IEEE} J. Sel. Top. Appl. Earth Observations Remote Sensing},
title = {{S}pectral {D}ecomposition of {S}oil {E}lectrical and {D}ielectric {L}osses and {P}rediction of {I}n {S}itu {GPR} {P}erformance},
year = {2016},
number = {1},
pages = {212--230},
volume = {9},
doi = {10.1109/jstars.2015.2424152},
publisher = {Institute of Electrical {\&} Electronics Engineers ({IEEE})},
timestamp = {2016.09.14},
}
@InProceedings{Igel2016,
author = {Igel, J. and Stadler, S. and G{\"u}nther, T.},
journal = {Ext. Abstr., SAGEEP, Denver, USA},
title = {{H}igh-resolution investigation of the capillary transition zone and its influence on {GPR} signatures},
year = {2016},
doi = {10.1109/icgpr.2016.7572603},
timestamp = {2016.06.28},
}
@Article{Costabel2016,
author = {Costabel, S. and G{\"u}nther, T. and Dlugosch, R. and M{\"u}ller-Petke, M.},
journal = {Geophysics},
title = {{T}orus-nuclear magnetic resonance: {Q}uasicontinuous airborne magnetic resonance profiling by using a helium-filled balloon},
year = {2016},
month = {jun},
number = {4},
pages = {WB119--WB129},
volume = {81},
doi = {10.1190/geo2015-0467.1},
publisher = {Society of Exploration Geophysicists},
timestamp = {2016.09.14},
}
@Article{Guenther2016,
author = {G{\"u}nther, T. and Martin, T.},
journal = {Journal of Applied Geophysics},
title = {{S}pectral two-dimensional inversion of frequency-domain induced polarisation data from a mining slag heap},
year = {2016},
pages = {436-448},
volume = {135},
doi = {10.1016/j.jappgeo.2016.01.008},
timestamp = {2015.12.21},
}
@Article{Hupfer2016,
author = {Hupfer, S. and Martin, T. and Weller, A. and G\"{u}nther, T. and Kuhn, K. and Ngninjio, V.D.N. and Noell, U.},
title = {{P}olarization effects of unconsolidated sulphide-sand-mixtures},
journal = {Journal of Applied Geophysics},
year = {2016},
volume = {135},
pages = {456-465},
month = {dec},
doi = {10.1016/j.jappgeo.2015.12.003},
publisher = {Elsevier {BV}},
timestamp = {2016.12.16},
}
@Article{Loewer2017,
author = {Loewer, M. and G\"{u}nther, T. and Igel, J. and Kruschwitz, S. and Martin, T. and Wagner, N.},
journal = {Geophysical Journal International},
title = {Ultra-broad-band electrical spectroscopy of soils and sediments{\textemdash}a combined permittivity and conductivity model},
year = {2017},
month = {jun},
number = {3},
pages = {1360--1373},
volume = {210},
doi = {10.1093/gji/ggx242},
publisher = {Oxford University Press ({OUP})},
timestamp = {2017.07.27},
}
@Article{Ronczka2017,
author = {Ronczka, M. and Hellman, K. and G\"{u}nther, T. and Wis{\'{e}}n, R. and Dahlin, T.},
journal = {Solid Earth},
title = {Electric resistivity and seismic refraction tomography: a challenging joint underwater survey at \"{A}sp\"{o} Hard Rock Laboratory},
year = {2017},
month = {jun},
number = {3},
pages = {671--682},
volume = {8},
doi = {10.5194/se-8-671-2017},
publisher = {Copernicus {GmbH}},
timestamp = {2017.07.27},
}
@Article{Hellman2017,
author = {Hellman, K. and Ronczka, M. and G\"{u}nther, T. and Wennermark, M. and R\"{u}cker, C. and Dahlin, T.},
journal = {Journal of Applied Geophysics},
title = {Structurally coupled inversion of {ERT} and refraction seismic data combined with cluster-based model integration},
year = {2017},
month = {aug},
pages = {169--181},
volume = {143},
doi = {10.1016/j.jappgeo.2017.06.008},
publisher = {Elsevier {BV}},
timestamp = {2017.07.27},
}
@Article{Bergmann2017,
author = {Bergmann, P. and Schmidt-Hattenberger, C. and Labitzke, T. and Wagner, F.M. and Just, A. and Flechsig, C. and Rippe, D.},
title = {Fluid injection monitoring using electrical resistivity tomography - five years of CO2 injection at Ketzin, Germany},
journal = {Geophysical Prospecting},
year = {2017},
volume = {65},
pages = {859-875},
issn = {1365-2478},
doi = {10.1111/1365-2478.12426},
publisher = {Wiley Online Library},
timestamp = {2016.08.24},
}
@Article{Boerner2017,
author = {B{\"o}rner, F. and M{\"u}ller-Huber, E. and Branka, D. and R{\"u}cker, C.},
journal = {Near Surface Geophysics},
title = {The effect of compaction on complex electrical resistivity of shaly sands},
year = {2017},
number = {6},
pages = {633--643},
volume = {15},
doi = {10.3997/1873-0604.2017056},
publisher = {European Association of Geoscientists \& Engineers},
}
@Article{Wagner2018,
author = {Wagner, F.M. and Wiese, B.},
title = {Fully coupled inversion on a multi-physical reservoir model - Part II: The Ketzin CO2 storage reservoir},
journal = {International Journal of Greenhouse Gas Control},
year = {2018},
volume = {75},
pages = {273-281},
doi = {10.1016/j.ijggc.2018.04.009},
timestamp = {2018.02.18},
}
@Article{Wiese2018,
author = {Wiese, B. and Wagner, F.M. and Norden, B. and Maurer, H. and Schmidt-Hattenberger, C.},
title = {Fully coupled inversion on a multi-physical reservoir model - Part I: Theory and concept},
journal = {International Journal of Greenhouse Gas Control},
year = {2018},
volume = {75},
pages = {262-272},
doi = {10.1016/j.ijggc.2018.05.013},
timestamp = {2018.02.18},
}
@Article{Watlet2018,
author = {Watlet, A. and Kaufmann, O. and Triantafyllou, A. and Poulain, Am. and Chambers, J. and Meldrum, P. and Wilkinson, P. and Hallet, V. and Quinif, Y. and van~Ruymbeke, M. and van~Camp, M.},
journal = {Hydrology and Earth System Sciences},
title = {Imaging groundwater infiltration dynamics in the karst vadose zone with long-term ERT monitoring},
year = {2018},
number = {2},
pages = {1563--1592},
volume = {22},
doi = {10.5194/hess-22-1563-2018},
publisher = {European Geosciences Union},
}
@Article{Jordi2018,
author = {Jordi, C. and Doetsch, J. and G{\"u}nther, T. and Schmelzbach, C. and Robertsson, J. O.A.},
journal = {Geophysical Journal International},
title = {Geostatistical regularization operators for geophysical inverse problems on irregular meshes},
year = {2018},
number = {2},
pages = {1374--1386},
volume = {213},
doi = {10.1093/gji/ggy055},
publisher = {Oxford University Press},
}
@Article{Rossi2018,
author = {Rossi, M. and Dahlin, T. and Olsson, P.-I. and G{\"u}nther, T.},
journal = {Near Surface Geophysics},
title = {Data acquisition, processing and filtering for reliable 3D resistivity and time-domain induced polarisation tomography in an urban area: field example of Vinsta, Stockholm},
year = {2018},
number = {3},
pages = {220--229},
volume = {16},
doi = {10.3997/1873-0604.2018014},
publisher = {European Association of Geoscientists \& Engineers},
}
@Article{Ronczka2018,
author = {Ronczka, M. and Wis{\'e}n, R. and Dahlin, T.},
journal = {Near Surface Geophysics},
title = {Geophysical pre-investigation for a Stockholm tunnel project: joint inversion and interpretation of geoelectric and seismic refraction data in an urban environment},
year = {2018},
number = {3},
pages = {258--268},
volume = {16},
doi = {10.3997/1873-0604.2018009},
publisher = {European Association of Geoscientists \& Engineers},
}
@Article{Skibbe2018,
author = {Skibbe, N. and G{\"u}nther, T. and M{\"u}ller-Petke, M.},
journal = {Geophysics},
title = {Structurally coupled cooperative inversion of magnetic resonance with resistivity soundings},
year = {2018},
number = {6},
pages = {JM51--JM63},
volume = {83},
doi = {10.1190/geo2018-0046.1},
publisher = {Society of Exploration Geophysicists and American Association of Petroleum~…},
}
@Article{Wunderlich2018,
author = {Wunderlich, T. and Fischer, P. and Wilken, D. and Hadler, H. and Erkul, E. and Mecking, R. and G{\"u}nther, T. and Heinzelmann, M. and V{\"o}tt, A. and Rabbel, W.},
journal = {Geophysics},
title = {Constraining electric resistivity tomography by direct push electric conductivity logs and vibracores: An exemplary study of the Fiume Morto silted riverbed (Ostia Antica, western Italy)},
year = {2018},
number = {3},
pages = {B87--B103},
volume = {83},
doi = {10.1190/geo2016-0660.1},
publisher = {Society of Exploration Geophysicists},
}
@Article{Wagner2019,
author = {Wagner, F.M. and Mollaret, C. and G{\"u}nther, T. and Kemna, A. and Hauck, C.},
title = {Quantitative imaging of water, ice, and air in permafrost systems through petrophysical joint inversion of seismic refraction and electrical resistivity data},
journal = {Geophysical Journal International},
year = {2019},
volume = {219},
number = {3},
pages = {1866--1875},
doi = {10.1093/gji/ggz402},
}
@Article{Rochlitz2019,
author = {Rochlitz, R. and Skibbe, N. and G{\"u}nther, T.},
journal = {Geophysics},
title = {custEM: Customizable finite-element simulation of complex controlled-source electromagnetic data},
year = {2019},
number = {2},
pages = {F17--F33},
volume = {84},
doi = {10.1190/geo2018-0208.1},
publisher = {Society of Exploration Geophysicists},
}
@Article{Pasquale2019,
author = {de~Pasquale, G. and Linde, N. and Greenwood, A.},
journal = {Journal of Applied Geophysics},
title = {Joint probabilistic inversion of DC resistivity and seismic refraction data applied to bedrock/regolith interface delineation},
year = {2019},
pages = {103839},
volume = {170},
doi = {10.1016/j.jappgeo.2019.103839},
publisher = {Elsevier},
}
@Article{Nickschick2019,
author = {Nickschick, T. and Flechsig, C. and Mrlina, J. and Oppermann, F.k and L{\"o}big, F. and G{\"u}nther, T.},
journal = {Solid Earth},
title = {Large-scale electrical resistivity tomography in the Cheb Basin (Eger Rift) at an International Continental Drilling Program (ICDP) monitoring site to image fluid-related structures},
year = {2019},
number = {6},
pages = {1951--1969},
volume = {10},
doi = {10.5194/se-10-1951-2019},
publisher = {Copernicus GmbH},
}
@Article{Leger2019,
author = {L{\'e}ger, E. and Dafflon, B. and Robert, Y.},
journal = {The Cryosphere},
title = {A distributed temperature profiling method for assessing spatial variability in ground},
year = {2019},
pages = {11},
volume = {13},
doi = {10.5194/tc-13-2853-2019},
}
@Article{Assouline2019,
author = {Assouline, D. and Mohajeri, N. and Gudmundsson, A. and Scartezzini, J.-L.},
journal = {Geothermal Energy},
title = {A machine learning approach for mapping the very shallow theoretical geothermal potential},
year = {2019},
number = {1},
pages = {19},
volume = {7},
doi = {10.1186/s40517-019-0135-6},
publisher = {Springer},
}
@Article{LopezAlvis2019,
author = {Lopez-Alvis, J. and Hermans, T. and Nguyen, F.},
journal = {Advances in Water Resources},
title = {A cross-validation framework to extract data features for reducing structural uncertainty in subsurface heterogeneity},
year = {2019},
pages = {103427},
volume = {133},
doi = {10.1016/j.advwatres.2019.103427},
}
@Article{Pasquale2019a,
author = {de~Pasquale, G. and Linde, N. and Doetsch, J. and Holbrook, W.S.},
journal = {Geophysical Journal International},
title = {Probabilistic inference of subsurface heterogeneity and interface geometry using geophysical data},
year = {2019},
doi = {10.1093/gji/ggz055},
}
@Article{Ochs2020,
author = {Ochs, J. and Klitzsch, N.},
journal = {Journal of Applied Geophysics},
title = {Considerations regarding small-scale surface and borehole-to-surface electrical resistivity tomography},
year = {2020},
pages = {103862},
volume = {172},
doi = {10.1016/j.jappgeo.2019.103862},
publisher = {Elsevier},
}
@Article{Skibbe2020,
author = {Skibbe, N. and Rochlitz, R. and G{\"u}nther, T. and M{\"u}ller-Petke, M.},
journal = {Geophysics},
title = {COMET: An open-source toolbox for Surface NMR},
year = {2020},
number = {3},
pages = {1--56},
volume = {85},
doi = {10.1190/geo2019-0484.1},
}
@Article{Jordi2020,
author = {Jordi, C. and Doetsch, J. and G{\"u}nther, T. and Schmelzbach, C. and Maurer, H. and Robertsson, J. O.A.},
journal = {Geophysical Journal International},
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}
@Article{su151813574,
abstract = {Seismic characterization of landslides offers the potential for developing high-resolution models on subsurface shear-wave velocity profile. However, seismic methods based on reflection processing are challenging to apply in such scenarios as a consequence of the disturbance to the often well-defined structural and stratigraphic layering by the landslide process itself. We evaluate the use of alternative seismic characterization methods based on elastic full waveform inversion (E-FWI) to probe the subsurface of a landslide complex in Majes, southern Peru, where recent agricultural development and irrigation activities have altered the hydrology and groundwater table and are thought to have contributed to increased regional landslide activities that present continuing sustainability community development challenges. We apply E-FWI to a 2D near-surface seismic data set for the purpose of better understanding the subsurface in the vicinity of a recent landslide location. We use seismic first-arrival travel-time tomography to generate the inputs required for E-FWI to generate the final high-resolution 2D compressional- and shear-wave (P- and S-wave) velocity models. At distances greater than 140 m from the cliff, the inverted models show a predominantly vertically stratified velocity structure with a low-velocity near-surface layer between 5–15 m depth. At distances closer than 140 m from the cliff, though, the models exhibit significantly reduced shear-wave velocities, stronger heterogeneity, and localized shorter wavelength structure in the top 20 m. These observations are consistent with those expected for a recent landslide complex; however, follow-on geotechnical analysis is required to confirm these assertions. Overall, the E-FWI seismic approach may be helpful for future landslide characterization projects and, when augmented with additional geophysical and geotechnical analyses, may allow for improved understanding of the hydrogeophysical properties associated with suspected ground-water-driven landslide activity.},
author = {Yang, J. and Shragge, J. and Girard, A. J. and Gonzales, E. and Ticona, J. and Minaya, A. and Krahenbuhl, R.},
doi = {10.3390/su151813574},
issn = {2071-1050},
journal = {Sustainability},
number = {18},
title = {Seismic Characterization of a Landslide Complex: A Case History from Majes, Peru},
volume = {15},
year = {2023},
}
@Article{Wang2022,
doi = {10.1007/s10712-022-09747-8},
year = {2022},
month = nov,
publisher = {Springer Science and Business Media {LLC}},
volume = {44},
number = {2},
pages = {357--386},
author = {Wang, Z. and Sun, C. and Wu, D.},
title = {Near-surface Site Characterization Based on Joint Iterative Analysis of First-arrival and Surface-wave Data},
journal = {Surveys in Geophysics}
}
@Article{ArboledaZapata2023,
doi = {10.1002/esp.5695},
year = {2023},
month = sep,
publisher = {Wiley},
author = {Arboleda-Zapata, M. and Guillemoteau, J. and Luc{\'{\i}}a, A. and Eberle, J. and Tronicke, J. and Korup, O.},
title = {Tracing past extreme floods on an alluvial fan using geophysical surveying},
journal = {Earth Surface Processes and Landforms}
}
@Article{Carrier2023,
doi = {10.1007/s10346-023-02137-0},
year = {2023},
month = oct,
publisher = {Springer Science and Business Media {LLC}},
author = {Carrier, A. and Meric, O. and Bottelin, P.},
title = {Characterizing landslide dynamics from time-lapse time domain induced polarization and ground-based imaging: a case study of the {MontGombert} landslide (French, Alps)},
journal = {Landslides}
}
@Comment{jabref-meta: databaseType:bibtex;}
@Article{Herring2023,
doi = {10.1002/ppp.2207},
year = {2023},
month = oct,
publisher = {Wiley},
volume = {34},
number = {4},
pages = {494--512},
author = {Herring, T. and Lewkowicz, A. G. and Hauck, C. and Hilbich, C. and Mollaret, C. and Oldenborger, G. A. and Uhlemann, S. and Farzamian, M. and Calmels, F. and Scandroglio, R.},
title = {Best practices for using electrical resistivity tomography to investigate permafrost},
journal = {Permafrost and Periglacial Processes}
}
@Article{Pavoni2023,
author = {Pavoni, M. and Boaga, J. and Wagner, F.M. and Bast, A. and Phillips, M.},
doi = {10.1016/j.jappgeo.2023.105097},
journal = {Journal of Applied Geophysics},
keywords = {Mountain permafrost, Electrical resistivity tomography (ERT), Refraction seismic tomography (RST), Joint inversion},
pages = {105097},
title = {Characterization of rock glaciers environments combining structurally-coupled and petrophysically-coupled joint inversions of electrical resistivity and seismic refraction datasets},
year = {2023},
}
@article{Steiner2023,
doi = {10.1016/j.cageo.2023.105339},
year = {2023},
month = jul,
publisher = {Elsevier {BV}},
volume = {176},
pages = {105339},
author = {Steiner, M. and Flores Orozco, A.},
title = {formikoj: A flexible library for data management and processing in geophysics - Application for seismic refraction data},
journal = {Computers {\&} Geosciences}
}
@article{Fiolleau2023,
doi = {10.1016/j.jappgeo.2023.105090},
year = {2023},
month = aug,
publisher = {Elsevier {BV}},
volume = {215},
pages = {105090},
author = {Fiolleau, S. and Uhlemann, S. and Wielandt, S. and Dafflon, B.},