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Observing Global Surface Water Flood Dynamics
Authors:Paul D. Bates  Jefferey C. Neal  Douglas Alsdorf  Guy J.-P. Schumann
Affiliation:1. School of Geographical Sciences, University of Bristol, University Road, Bristol, BS8 1SS, UK
2. School of Geographical Sciences, University of Bristol, University Road, Bristol, BS8 1SS, UK
3. Byrd Polar Research Center, School of Earth Sciences, The Ohio State University, 123 Scott Hall, 1090 Carmack Road, Columbus, OH, 43210-1308, USA
4. Jet Propulsion Laboratory, California Institute of Technology, Pasadena, CA, 91109, USA
Abstract:Flood waves moving along river systems are both a key determinant of globally important biogeochemical and ecological processes and, at particular times and particular places, a major environmental hazard. In developed countries, sophisticated observing networks and ancillary data, such as channel bathymetry and floodplain terrain, exist with which to understand and model floods. However, at global scales, satellite data currently provide the only means of undertaking such studies. At present, there is no satellite mission dedicated to observing surface water dynamics and, therefore, surface water scientists make use of a range of sensors developed for other purposes that are distinctly sub-optimal for the task in hand. Nevertheless, by careful combination of the data available from topographic mapping, oceanographic, cryospheric and geodetic satellites, progress in understanding some of the world’s major river, floodplain and wetland systems can be made. This paper reviews the surface water data sets available to hydrologists on a global scale and the recent progress made in the field. Further, the paper looks forward to the proposed NASA/CNES Surface Water Ocean Topography satellite mission that may for the first time provide an instrument that meets the needs of the hydrology community.
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