H31E:
Hydrogeophysical Characterization of the Critical Zone Posters

Session ID#: 2910

Wednesday, 17 December 2014: 8:00 AM-12:20 PM
Not an Option (Moscone West)
Chair:  Ulrike Werban, Helmholtz Centre for Environmental Research - UFZ, Leipzig, Germany
Primary Convener:  Ulrike Werban, Helmholtz Centre for Environmental Research - UFZ, Leipzig, Germany
Co-Convener:  David W Hyndman, University of Texas at Dallas, Department of Sustainable Earth Systems Sciences, School of Natural Sciences and Mathematics, Richardson, United States
OSPA Liaison:  Peter Dietrich, Helmholtz Centre for Environmental Research UFZ Leipzig, Department of Monitoring and Exploration Technologies, Leipzig, Germany
Co-Sponsor(s):
  • NS - Near Surface Geophysics
Index Terms:
Virtual Option?: No

Abstracts Submitted to this Session:

 
A New TDR-Waveform Approach Capable to Measure Soil Moisture Contents at Large Electrical Conductivity Ranges (8802)
Felipe Cristi Matte1, Verónica Fierro1, Francisco I Suarez2 and Jose Munoz1, (1)Pontifical Catholic University of Chile, Santiago, Chile, (2)Pontificia Universidad Católica de Chile, Santiago, Chile
 
New Ways to Continuous Measurements of Soil Moisture in a Hyper-arid Dune Sand Environment (21816)
Tino Rödiger1, Franz Königer2, Frank Bonitz3 and Christian Siebert1, (1)Helmholtz Centre for Environmental Research UFZ Halle, Catchment Hydrology, Halle, Germany, (2)Karlsruhe Institute of Technology, Institute of Functional Interfaces, Karlsruhe, Germany, (3)MFPA at Bauhaus University Weimar, Weimar, Germany
 
Monitoring Changes in Moisture Load Using Elastic Displacements in the Vadose Zone (27898)
Larry C Murdoch, Clemson University, Environmental Engineering and Earth Sciences, Clemson, SC, United States, Colby Joseph Thrash, Clemson University, Clemson, SC, United States, Leonid N Germanovich, Georgia Tech, Atlanta, GA, United States and Andrew Weinberg, Texas Water Development Board, Austin, TX, United States
 
Inverting GPR Dispersion Curves to Resolve Water Content Profiles of Precipitation Induced Low-Velocity Waveguides (9287)
Adam R Mangel, Pacific Northwest National Laboratory, Richland, United States, Stephen M Moysey, Clemson University, Environmental Engineering and Earth Sciences, Clemson, SC, United States and Jan Van Der Kruk, Forschungszentrum Jülich, Institute of Bio- and Geosciences (Agrosphere, IBG-3), Jülich, Germany
 
Ground penetrating radar for monitoring tree roots (24947)
Mine Dogan, University of Wyoming, Laramie, WY, United States and Andy Parsekian, University of Wyoming, Department of Geology and Geophysics, Laramie, WY, United States
 
A Comparison of Electromagnetic Induction and Electrical Resistivity Tomography Techniques for Monitoring of Shallow Soil Moisture Dynamics (11499)
Anthony Lee Endres1, Cameron Toy1, Philip R Van-Lane1, Wesley J Campbell1 and Colby Michael Steelman2, (1)University of Waterloo, Waterloo, ON, Canada, (2)University of Guelph, Guelph, ON, Canada
 
Estimation of soil salinity by using Markov Chain Monte Carlo simulation for multi-configuration electromagnetic induction measurements (20839)
Khan Z Jadoon1, Muhammad Umer Altaf1,2, Matthew F McCabe1, Ibrahim Hoteit3 and Davood Moghadas4, (1)King Abdullah University of Science and Technology (KAUST), Water Desalination and Reuse Center, Thuwal, Saudi Arabia, (2)King Abdullah University of Science and Technology (KAUST), Department of Earth Sciences and Engineering, Thuwal, Saudi Arabia, (3)King Abdullah University of Science and Technology (KAUST), Earth Sciences and Engineering, Thuwal, Saudi Arabia, (4)Fed. Inst. for Geosc. and nat. Resources, Hannover, Germany
 
Time Lapse Electrical Resistivity Tomography, Distributed Temperature Measurements and Modeling in the Hyporheic Zone of an Alpine River. (15276)
Jacopo Boaga1, Laura Busato2, Maria Teresa Perri2, Guglielmo Strapazzon2, Damiano Pasetto3, Mario Putti3, Karina Cano Paoli4, Bruno Majone4, Alberto Bellin4 and Giorgio Cassiani2, (1)University of Padova, Department of Geosciences, Padova, Italy, (2)University of Padua, Department of Geosciences, Padua, Italy, (3)University of Padua, Department of Mathematics, Padua, Italy, (4)University of Trento, Department of Civil and Environmental Engineering, Trento, Italy
 
The Evolution of Soil Hydrological and Physical Properties under the Impact of Mineral Weathering and Organic Matter Sequestration (20025)
Fang Tan1, Eric Lunn1, Beth Fisher2, Kyungsoo Yoo3, Paul Thomas Imhoff4 and Holly A Michael5, (1)University of Delaware, Newark, DE, United States, (2)Minnesota State University Mankato, Mankato, MN, United States, (3)University of Minnesota, Soil, Water and Climate, Saint Paul, United States, (4)University of Delaware, Civil and Environmental Engineering, Newark, DE, United States, (5)University of Delaware, Earth Sciences, Civil and Environmental Engineering, Newark, DE, United States
 
Resolving Lithological Units in the Vadose Zone from Temporal Changes in Electrical Conductivity (11580)
Jason P Chang, Stanford University, Stanford, CA, United States and Rosemary J Knight, Stanford University, Geophysics, Stanford, United States
 
Direct push driven in situ color logging tool (CLT): technique, analysis routines, and application (21128)
Joerg Hausmann1, Peter Dietrich1,2, Thomas Vienken3 and Ulrike Werban1, (1)Helmholtz Centre for Environmental Research UFZ Leipzig, Department Monitoring and Exploration Technologies, Leipzig, Germany, (2)University of Tübingen, Centre for Applied Geosciences, Tübingen, Germany, (3)UFZ - Helmholtz Centre for Environmental Research Leipzig, Department Monitoring and Exploration Technologies, Leipzig, Germany
 
Defining the base of the Critical Zone: Stress, Topography, Fracture Permeability (24067)
James St. Clair, University of Wyoming, Laramie, United States, Seulgi Moon, Massachusetts Institute of Technology, Los Angeles, CA, United States, W Steven Holbrook, Univ Wyoming, Laramie, WY, United States, J Taylor Perron, Massachusetts Institute of Technology, Department of Earth, Atmospheric, & Planetary Sciences, Cambridge, United States, Stephen J Martel, Univ Hawaii, Honolulu, HI, United States and Kamini Singha, Colorado School of Mines, Hydrologic Science and Engineering Program; School of Earth, Space and Planets, Golden, United States
 
Toward catchment vadose zone characterization by linking geophysical electromagnetic induction and remote sensing data (25433)
Christian von Hebel1, Sebastian Rudolph2, Achim Mester1, Johan Alexander Huisman3, Carsten Montzka4, Lutz Weihermueller5, Harry Vereecken6 and Jan Van Der Kruk3, (1)Agrosphere Institute (IBG-3), Forschungszentrum Jülich, Jülich, Germany, (2)British Geological Survey Keyworth, Environmental Science Centre, Nottinghamshire, United Kingdom, (3)Forschungszentrum Jülich, Agrosphere (IBG 3), Jülich, Germany, (4)Forschungszentrum Jülich, Jülich, Germany, (5)Forschungszentrum Jülich, IBG-3: Agrosphere, Jülich, Germany, (6)Geoverbund ABC/J, Centre for High-Performance Scientific Computing in Terrestrial Systems (TerrSys), Jülich, Germany
 
Using Hydrogeophysical Methods to Understand the Spatial Distribution of the Bedrock-regolith Interface in the Rio Icacos Watershed (Luquillo Critical Zone Observatory, Puerto Rico). (29010)
Xavier Comas, Florida International University, Earth and Environment, Miami, United States, William J Wright, Florida Atlantic University, Boca Raton, FL, United States, Scott A Hynek, Pennsylvania State University Main Campus, University Park, PA, United States, Joe Orlando, Pennsylvania State University, State College, PA, United States, Heather L Buss, University of Bristol, Bristol, United Kingdom and Susan L Brantley, Pennsylvania State University Main Campus, Earth and Environmental Systems Institute, University Park, PA, United States; Pennsylvania State University Main Campus, Earth & Environmental Systems Institute, University Park, PA, United States
 
Interactions between landscape types and infiltration fluxes (32041)
Natalia Kurinova, Lomonosov Moscow State University, Moscow, Russia
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