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Numerical prediction of morphological change of straight trapezoidal open-channel
Authors:Sung-Uk Choi  Younghoon Joung
Affiliation:1. Department of Civil & Environmental Engineering, Yonsei University, Shinchon-dong, Seodaemun-gu, Seoul 120-749, Republic of Korea;2. ISAN Research Institute, ISAN Corporation, Gwanyang-dong, Dongan-gu, Gyeonggi-do 431-060, Republic of Korea
Abstract:This paper presents a numerical model that is capable of simulating the morphological process of the trapezoidal open-channel. The fact that particles on the sloped side bank do not move in the same direction as the flow adds the difficulty in modeling. The lateral distribution model, which distributes the unit discharge over the width, is used for the flow analysis. Vectorial bedload formula by Kovacs and Parker (1994) is used and channel topography is calculated by solving Exner’s equation with the help of sliding algorithm proposed by Menendez et al. (2008). Values of roughness coefficient and lateral eddy viscosity are calibrated using laboratory data sets. Finally, the proposed model is applied to laboratory experiments of Ikeda (1981) and Izumi et al. (1991). Time evolutions of channel cross section and dimensionless shear stress are provided and discussed.
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