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首页> 外文期刊>Arabian Journal for Science and Engineering >Numerical solution of depth-averaged velocity and boundary shear stress distribution in converging compound channels
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Numerical solution of depth-averaged velocity and boundary shear stress distribution in converging compound channels

机译:会聚复合通道中水深平均速度和边界切应力分布的数值解

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In prismatic compound channels, the water level remains uniform throughout the length of the channel. But in case of non-prismatic compound channels, the flow becomes non-uniform and complex. This paper examines the use of Lateral Distribution Method (LDM) and its modifications in the computation of depth-averaged velocity and boundary shear stress distribution in a compound channel for both prismatic and non-prismatic floodplains. The modification of LDM has been done considering the friction slope and secondary current effect. Finite difference scheme has been used for discretizing the Modified LDM using MATLAB tool. For the present study, different prismatic and non-prismatic compound channels having converging flood plains have been considered to evaluate the strength of Modified LDM over other numerical approaches like LDM and Conveyance and Afflux Estimation system.
机译:在棱柱形复合通道中,整个通道的水位保持均匀。但是在非棱柱复合通道的情况下,流量变得不均匀和复杂。本文探讨了横向分布方法(LDM)的使用及其在计算棱柱形和非棱形洪泛区复合通道中的平均速度和边界切应力分布中的应用。考虑到摩擦斜率和次级电流效应,对LDM进行了修改。有限差分方案已用于使用MATLAB工具离散化修改的LDM。对于本研究,已经考虑了具有收敛洪泛平原的不同棱柱形和非棱柱形复合渠道,以评估改性LDM相对于其他数值方法(如LDM和“运输和流量估算”系统)的强度。

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