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Numerical Simulation of Bank Erosion and Channel Migration in Meandering Rivers

机译:曲流河岸侵蚀与河道迁移的数值模拟

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摘要

A numerical model of river morphology for meander bends with erodible cohesive banks is herein developed and tested. The new model has three key features. First, it couples a two-dimensional depth-averaged model of flow and bed topography with a mechanistic model of bank erosion. Second, it simulates the deposition of failed bank material debris at and its subsequent removal from the toe of the bank. Finally, the governing conservation equations are implemented in a moving boundary fitted coordinate system that can be both curvilinear and nonorthogonal. This simplifies grid generation in curved channels that experience bank deformation, allowing complex planform shapes associated with irregular natural channels to be simulated. Model performance is assessed using data from two flume experiments and a natural river channel. Results are encouraging, but the model underpredicts the scour depth in pools adjacent to the outer bank and, consequently, underpredicts bank migration rates.
机译:本文开发并测试了带有易蚀粘性河岸的曲折弯河形态的数值模型。新模型具有三个主要功能。首先,它结合了二维深度平均模型和河床地形,以及堤岸侵蚀的力学模型。其次,它模拟失效的堤岸材料碎片在堤坝上的沉积以及随后从堤坝趾头上清除的过程。最后,控制守恒方程是在可移动的曲线和非正交边界拟合坐标系中实现的。这简化了遇到堤岸变形的弯曲通道中的网格生成,从而可以模拟与不规则自然通道相关的复杂平面形状。使用两个水槽实验和一条天然河道的数据评估模型性能。结果令人鼓舞,但是该模型低估了与外部银行相邻的池中的冲刷深度,因此,低估了银行的迁移率。

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