H34A:
Advances in Data Integration, Inverse Methods, and Data Valuation across a Range of Scales in Hydrogeophysics II

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Session ID#: 16991

Session Description:
Hydrogeophysical methods provide spatially continuous subsurface profiles via the integration of hydrological and geophysical datasets. This approach shows promise in improving the predictive accuracy of hydrologic models, aids in uncertainty assessment of hydrologic parameters, and enhances the general understanding and monitoring of hydrologic processes. This session solicits research that incorporates hydrological and geophysical measurements to improve the characterization of hydrologic parameters and processes. Sought topics include, but are not limited to: innovative coupled or joint inversion strategies; novel strategies to incorporate hydrologic process information into inversion systems; application of coupled hydrogeophysical modeling; data errors and uncertainty quantification methods; hydrogeophysical experimental design; methods for evaluation of hydrogeophysical data worth.
Primary Convener:  Erasmus K. Oware, University at Buffalo, Department of Geology, Buffalo, NY, United States
Conveners:  Majken Caroline Looms, University of Copenhagen, København K, Denmark, Anja Klotzsche, Agrosphere Institute (IBG-3) Forschungszentrum Jülich, Deutschland, Germany and Mine Dogan, University of Wyoming, Laramie, WY, United States
Chairs:  Erasmus K. Oware, University at Buffalo, Department of Geology, Buffalo, NY, United States and Anja Klotzsche, Agrosphere Institute (IBG-3) Forschungszentrum Jülich, Deutschland, Germany
OSPA Liaison:  Majken Caroline Looms, University of Copenhagen, København K, Denmark

Cross-Listed:
  • NS - Near Surface Geophysics

Abstracts Submitted to this Session:

Marvin Reich1, Andreas Guntner1, Michal Mikolaj2, Theresa Blume1 and Stephan Schröder1, (1)Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences, Hydrology, Potsdam, Germany, (2)Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences, Potsdam, Germany
Jasper A Vrugt, UC-Irvine, Irvine, United States
Guillaume Pirot1, Niklas Linde1, Emanuel Huber2 and James Irving3, (1)University of Lausanne, Lausanne, Switzerland, (2)Stanford School of Earth, Geological Sciences, Stanford, CA, United States, (3)University of Lausanne, Institute of Earth Sciences, Lausanne, Switzerland
Emmanuel Leger1, Baptiste Dafflon1, Mike Thorpe2, Aaron Kreitinger2, Dobeck Laura3, Jacob Haivala3, John Peterson1, Lee Spangler3 and Susan S. Hubbard4, (1)Lawrence Berkeley National Laboratory, Berkeley, CA, United States, (2)Bridger Photonics, Bozeman, MT, United States, (3)Montana State University, Energy Research Institute, Bozeman, MT, United States, (4)Oak Ridge National Laboratory, Oak Ridge, TN, United States
Jonathan Algeo, Rutgers University Newark, Earth & Environmental Sciences, Newark, NJ, United States, Lee D Slater, Rutgers University, Department of Earth and Environmental Sciences, Newark, United States, Andrew M. Binley, University of Lancaster, Lancaster, United Kingdom, Remke L Van Dam, CEFET-MG Federal Center of Technological Education of Minas Gerais, Belo Horizonte, Brazil and Christopher W Watts, Rothamsted Research, Devon, United Kingdom
Andreas Kemna1, Maximilian Weigand2, Florian M. Wagner3, Christin Hilbich4 and Christian Hauck4, (1)University of Bonn, Institute of Geosciences, Geophysics Section, Bonn, Germany, (2)Department of Geophysics, Steinmann Institute, University of Bonn, Bonn, Germany, Bonn, Germany, (3)Institute for Applied Geophysics and Geothermal Energy, RWTH Aachen University, Aachen, Germany, (4)University of Fribourg, Geosciences, Fribourg, Switzerland
Tim C Johnson, Pacific Northwest National Laboratory, Richland, United States and U.S. Department of Energy SubTER Blue Canyon Dome Fracture Imaging Team
Andre Revil, CNRS, Paris Cedex 16, France

See more of: Hydrology