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MODELING OF RIVER MORPHOLOGIC CHANGES
引用本文:Charles C. S. SONG, Yifan ZHENG, and Chih Ted YANG(,St. Anthony Falls Hydraulic Laboratory,Department of Civil Engineering,University of Minnesota,Minneapolis MN 55414,U. S. A.)( Bechtel Corporation,formerly Reseaxch Assistant,St. Anthony Falls H. MODELING OF RIVER MORPHOLOGIC CHANGES[J]. 国际泥沙研究, 1995, 0(2)
作者姓名:Charles C. S. SONG   Yifan ZHENG   and Chih Ted YANG(  St. Anthony Falls Hydraulic Laboratory  Department of Civil Engineering  University of Minnesota  Minneapolis MN 55414  U. S. A.)( Bechtel Corporation  formerly Reseaxch Assistant  St. Anthony Falls H
作者单位:Charles C. S. SONG; Yifan ZHENG; and Chih Ted YANG(,St. Anthony Falls Hydraulic Laboratory,Department of Civil Engineering,University of Minnesota,Minneapolis MN 55414,U. S. A.
摘    要:MODELINGOFRIVERMORPHOLOGICCHANGESCharlesC.S.SONG;YifanZHENG;andChihTedYANG(Professor,St.AnthonyFallsHydraulicLaboratory,Depar...


MODELING OF RIVER MORPHOLOGIC CHANGES
Charles C. S. SONG, Yifan ZHENG, and Chih Ted YANG. MODELING OF RIVER MORPHOLOGIC CHANGES[J]. International Journal of Sediment Research, 1995, 0(2)
Authors:Charles C. S. SONG   Yifan ZHENG    Chih Ted YANG
Abstract:The flood- and sediment-routing model GSTANS of the U. S. Bureau of Reclamation has been tested and expanded. GSTARS is based on a concept which combines a send-twodimensional flow model with the theory of minimum energy dissipation rate such that the variation of channel width as well as the river bed elevation can be predicted efflciently.Several new features were added to the original version of the GSTARS to more accurately simulate the erosion process of an unlined channel downstream of a spillway during a spill. The case study demonstrstes that the newly enhanced GSTARS can accurately simulate the complicated channel adjustment process by a flood.
Keywords:Bank stability Channel geometry   Flood   Local scour   Meandering channel   Minimum energy dissipation rate   Numerical model   River Morphology   Sediment transport
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