H11G:
Hydrochronology: Advances in Tracer Methods and Modeling of Residence Times in Hydrology I
Submit an Abstract to this Session
Session ID#: 62037
Session Description:
Residence times are an important characteristic of hydrological systems, controlling water rock interaction, biogeochemical cycling, contaminant transport and breakthrough, and water supply sustainability. Integration of residence time analysis and catchment hydrology has led to a better comprehension of catchment processes, both in the unsaturated and saturated zone, and the interaction between vegetation and hydrology.
This session invites new analytical methods (e.g. radioactive isotopes) to study water ages, characterization of surface waters and groundwater by chemical or isotopic data (e.g. tritium), and applications of numerical models and ranked age storage selection functions to dynamic hydrological systems. We welcome studies into water storage dynamics, solute fate and transport, weathering, and erosion processes in relation to feature of the landscape. We especially encourage studies that investigate the age of the evapotranspiration flux as an integral part of the hydrochronology of the critical zone.
Primary Convener: Ate Visser, Lawrence Livermore National Laboratory, Livermore, CA, United States
Conveners: Christopher T Green, USGS, Integrated Modeling Prediction Division, Moffett Field, California, United States, Ype Van der Velde, Vrije Universiteit Amsterdam, Amsterdam, Netherlands and Arash Massoudieh, Catholic University of America, Washington, United States
Primary Liaison: Ate Visser, Lawrence Livermore National Laboratory, Nuclear and Chemical Sciences Division, Livermore, CA, United States
Chairs: Ate Visser, Lawrence Livermore National Laboratory, Nuclear and Chemical Sciences Division, Livermore, CA, United States and Christopher T Green, USGS, Integrated Modeling Prediction Division, Moffett Field, California, United States
OSPA Liaison: Ate Visser, Lawrence Livermore National Laboratory, Nuclear and Chemical Sciences Division, Livermore, CA, United States
Abstracts Submitted to this Session:
Matthias Sprenger1,2, Christine Stumpp3, Scott T Allen4, Paolo Benettin5, Maren Dubbert6, Andreas J Hartmann7,8, Markus Hrachowitz9, Natalie Orlowski10, Stephan Pfahl11, Michael Rinderer8, Nicolas B. Rodriguez12, Christiane Werner13 and Markus Weiler14, (1)University of Freiburg, Freiburg, Germany, (2)Institute of Environmental Assessment and Water Research (IDAEA-CSIC), Barcelona, Spain, (3)University of Natural Resources and Life Sciences, Institute of Hydraulics and Rural Water Management, Vienna, Austria, (4)ETH Swiss Federal Institute of Technology Zurich, Department of Environmental Systems Science, Zurich, Switzerland, (5)Swiss Federal Institute of Technology Lausanne, ENAC/IIE/ECHO, Lausanne, Switzerland, (6)Leibniz-Institute of Freshwater Ecology and Inland Fisheries (IGB), Berlin, Germany, (7)University of Bristol, Bristol, United Kingdom, (8)University of Freiburg, Chair of Hydrological Modeling and Water Resources, Freiburg, Germany, (9)Delft University of Technology, Faculty of Civil Engineering and Geosciences, Department of Water management, Delft, Netherlands, (10)University of Freiburg, Hydrology, Freiberg, Germany, (11)Freie Universität Berlin, Institut für Meteorologie, Berlin, Germany, (12)Luxembourg Institute of Science and Technology, Catchment and Eco-hydrology, Esch-sur-Alzette, Luxembourg, (13)University of Freiburg, Ecosystem Physiology, Faculty of Environment and Natural Resources, Freiberg, Germany, (14)University of Freiburg, Freiberg, Germany
Gabriel F Bacca-Cortes, University of Waterloo, Earth Sciences, Waterloo, ON, Canada, Philippe Van Cappellen, University of Waterloo, Ecohydrology Research Group, Waterloo, ON, Canada and Hans Hermann Dürr, University of Waterloo, Waterloo, ON, Canada
Daniel C Wilusz1, Ciaran J Harman2, William P Ball1, Reed M Maxwell3 and Anthony R Buda4, (1)Johns Hopkins University, Geography and Environmental Engineering, Baltimore, MD, United States, (2)Johns Hopkins University, Environmental Health and Engineering, Baltimore, MD, United States, (3)Princeton University, Princeton, NJ, United States, (4)USDA ARS, University Park, PA, United States
Zhufeng Fang, Desert Research Institute Reno, Reno, NV, United States, Rosemary W H Carroll, Desert Research Institute, Division of Hydrologic Sciences, Reno, United States, Rina Schumer, Desert Research Institute, Reno, NV, United States, Ciaran J Harman, Johns Hopkins University, Environmental Health and Engineering, Baltimore, MD, United States, Daniel C Wilusz, Dewberry, Fairfax, VA, United States and Kenneth Hurst Williams, Lawrence Berkeley National Laboratory, Earth and Environmental Sciences Area, Berkeley, United States
Tamara Kolbe, SLU Swedish University of Agricultural Sciences Uppsala, Uppsala, Sweden, Jean-Raynald De Dreuzy, Univ Rennes 1, Rennes, France and Kevin H Bishop, Swedish University of Agricultural Sciences, Department of Aquatic Sciences and Assessment, Uppsala, Sweden
Coralie Ranchoux1, Thierry Labasque2, Daniel Viville3, Luc Aquilina4 and Francois Chabaux3, (1)LHyGeS Laboratoire d'Hydrologie et de Géochimie de Strasbourg, Strasbourg Cedex, France, (2)University of Rennes 1, Géosciences Rennes UMR 6118, Rennes, France, (3)LHyGeS-UMR7517, EOST, INSU/CNRS, Strasbourg, France, (4)Géosciences Rennes, UMR CNRS 6118 - Université Rennes 1, Rennes Cedex, France
Eun-Hee Koh1, Eunhee Lee2, Dugin Kaown3, Christopher T Green4, Dong-Chan Koh2 and Kang Kun Lee5, (1)Seoul National University, Seoul, South Korea, (2)Korea Institute of Geoscience and Mineral Resources, Daejeon, South Korea, (3)Seoul Nation Univ, Seoul, South Korea, (4)USGS, Integrated Modeling Prediction Division, Moffett Field, California, United States, (5)Seoul National University, School of Earth and Environmental Sciences, Seoul, South Korea
Hans Peter Broers, TNO Geological Survey of the Netherlands, Geomodelling, Utrecht, Netherlands and Marielle van Vliet, TNO Geological Survey of the Netherlands, Utrecht, Netherlands