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Assessment of an ASTER-generated DEM for 2D hydrodynamic flood modeling
Authors:Tesfaye Haimanot Tarekegn  Alemseged Tamiru Haile  Tom Rientjes  P Reggiani  Dinand Alkema
Institution:1. Water Technology Institute, Arba Minch University, PO Box 21, Arba Minch, Ethiopia;2. Water Resources Department, International Institute for Geo-Information Science and Earth Observation, PO Box 6, 7500 AA Enschede, The Netherlands;3. Department of Hydraulic Structures and Probabilistic Design, Delft University of Technology, PO Box 5048, 2600 GA Delft, The Netherlands;4. Earth Systems Analysis Department, International Institute for Geo-Information Science and Earth Observation, PO Box 6, 7500 AA Enschede, The Netherlands
Abstract:Flood modeling often provides inputs to flood hazard management. In the present work we studied the flooding characteristics in the data scarce region of the Lake Tana basin at the source of the Blue Nile River. The study required to integrate remote sensing, GIS with a two-dimensional (2D) module of the SOBEK flood model. The resolution of the topographic data in many areas, such as the Lake Tana region, is commonly too poor to support detailed 2D hydrodynamic modeling. To overcome such limitations, we used a Digital Elevation Model (DEM) which was generated from the Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) image. A GIS procedure is developed to reconstruct the river terrain and channel bathymetry. The results revealed that a representation of the river terrain largely affects the simulated flood characteristics. Simulations indicate that effects of Lake Tana water levels propagate up to 13 km along the Ribb River. We conclude that a 15 m resolution ASTER DEM can serve as an input to detailed 2D hydrodynamic modeling in data scarce regions. However, for this purpose it is necessary to accurately reconstruct the river terrain geometry and flood plain topography based on ground observations by means of a river terrain model.
Keywords:Two-dimensional floodplain modeling  ASTER DEM  SOBEK  MODIS  GIS
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