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Application of Lateral Distribution Method and Modified Lateral Distribution Method to the Compound Channel Having Converging Floodplains

机译:侧向分布法和修正的侧向分布法在具有汇聚洪泛区的复合河道中的应用

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This paper examines the use of lateral distribution method (LDM) and modified LDM in the computation of depth-averaged velocity distributions and boundary shear stress distributions of compound channel having converging floodplain. In two-stage channel flow, the main channel is influenced by the adjoining floodplains and the conveyance capacity is normally decreased. The many-sided quality of the issue rises progressively when dealing with a compound channel with non-prismatic floodplains. Due to change in floodplain geometry, water streaming on the floodplain now traverses in the main channel, resulting in increased interaction and momentum exchange. This additional exchange in momentum should also be considered in the flow modelling. In this research work, the modified LDM equation considers friction slope and LDM equation is dis-cretized by finite difference scheme, and for solving those equations, MATLAB tool is used. Depth-averaged velocity distributions and boundary shear stress distributions obtained from LDM and MLDM are compared with the experimental data sets.
机译:本文研究了侧向分布法(LDM)和改进的LDM在计算具有收敛性洪泛区的复合河道的平均速度分布和边界切应力分布中的应用。在两级河道水流中,主河道受到相邻洪泛区的影响,输送能力通常会降低。当使用非棱柱形洪泛区处理复合渠道时,问题的多方面质量逐渐提高。由于洪泛区几何形状的变化,洪泛区上的水流现在在主河道中流动,从而增加了相互作用和动量交换。在流动建模中也应考虑动量的这种额外交换。在这项研究工作中,修改后的LDM方程考虑了摩擦斜率,并通过有限差分方案对LDM方程进行了离散化,并使用MATLAB工具求解这些方程。从LDM和MLDM获得的深度平均速度分布和边界切应力分布与实验数据集进行了比较。

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