Modelling of Stratified River Bank Erosion Due to Undercutting

M. Akode Osman
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Abstract

Theories of soil mechanics and basic hydraulic relations and principles of loose boundary channel hydraulics were combined and integrated to analyze stratified river bank failure due to undercutting (undermining) of a bottom loose layer. A near bank velocity distribution model was developed from which the boundary shear stress acting on the bank surface was determined. The model allows computation of the eroded soil volume from the bottom loose layer and the lateral undercut distance at any time in the flow hydrograph as long as the induced flow shear stress is greater than the particle critical shear stress resistance to hydraulic entrainment. At failure the size of the failure block and the ultimate critical value of the lateral undercut distance are determined. Therefore the annual rate of bank retreat and bank sediment load contribution can be identified for the reach under consideration. The application of the model to the River Nile hydrograph in Northern Sudan State showed a good agreement with field observations.
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浅挖引起的分层河岸侵蚀模型
将土力学理论与松散边界河道水力学的基本水力学关系和原理相结合,分析了底层松散层下切(破坏)导致的分层河岸破坏。建立了近岸速度分布模型,据此确定了作用在岸面上的边界剪应力。只要诱导流剪应力大于颗粒抗水力夹带的临界剪应力,该模型允许在水流线中任意时刻计算从底层松散层开始的侵蚀土体积和侧向下切距离。在破坏时,确定了破坏块的大小和侧向咬边距离的极限临界值。因此,可以确定所考虑河段的年退岸率和岸沙负荷贡献。将该模型应用于苏丹北部的尼罗河水文,与实地观测结果吻合较好。
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