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Application of isotope tracers in continental scale hydrological modeling
Authors:Balzs M Fekete  John J Gibson  Pradeep Aggarwal  Charles J Vrsmarty
Institution:

aWater Systems Analysis Group, Institute for the Study of Earth, Oceans, and Space, University of New Hampshire, 39 College Road, Morse Hall, Durham, NH 03824, USA

bWater and Climate Impact Research Centre (W-CIRC), University of Victoria, Canada

cInternational Atomic Energy Agency, Vienna, Austria

dEarth Sciences Department, University of New Hampshire, USA

Abstract:Isotope tracers are widely used to study hydrological processes in small catchments, but their use in continental-scale hydrological modeling has been limited. This paper describes the development of an isotope-enabled global water balance and transport model (iWBM/WTM) capable of simulating key hydrological processes and associated isotopic responses at the large scale. Simulations and comparisons of isotopic signals in precipitation and river discharge from available datasets, particularly the IAEA GNIP global precipitation climatology and the USGS river isotope dataset spanning the contiguous United States, as well as selected predictions of isotopic response in yet unmonitored areas illustrate the potential for isotopes to be applied as a diagnostic tool in water cycle model development. Various realistic and synthetic forcings of the global hydrologic and isotopic signals are discussed. The test runs demonstrate that the primary control on isotope composition of river discharge is the isotope composition of precipitation, with land surface characteristics and precipitation-amount having less impact. Despite limited availability of river isotope data at present, the application of realistic climatic and isotopic inputs in the model also provides a better understanding of the global distribution of isotopic variations in evapotranspiration and runoff, and reveals a plausible approach for constraining the partitioning of surface and subsurface runoff and the size and variability of the effective groundwater pool at the macro-scale.
Keywords:Stable isotopes  Isotope tracers  Isotope fractionation  Water balance  Evapotranspiration  Runoff  Surface water  Groundwater
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