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Numerical simulation of scour and flow field over movable bed induced by a submerged wall jet

机译:浸没式壁射流诱导的可移动床上冲刷和流场的数值模拟

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Dam construction continues its rapid expansion around the world primarily for the purpose of hydropower generation. One important consequence of such projects is local scour at the downstream of the dam caused by outflow of excess reservoir water through spillways or bottom outlets that is associated with high velocities. The scour development endangers the dam foundation and river banks and undermines the stability of the hydraulic structures. In this study, a detailed three-dimensional (3D) flow simulation is conducted to investigate the complex fluid-sediment interactions leading to the formation of the scour hole and ridge systems downstream of a near-bottom jet. Three different bed-load equations, including Meyer-Peter-Muller, Nielsen, and Van Rijn formulas, are applied for calculating the bed-load transport rate. Comparison with a series of available experimental data shows that the Meyer-Peter-Muller equation results in better predictions than the two other relations. The performance of different turbulence models to reproduce vertical profiles of velocity and scour characteristic against the experimental data were evaluated. The vertical and horizontal profiles of the scour hole-ridge system are also compared with the corresponding experimental ones. The numerical model satisfactorily reproduces the geometric parameters representing the scour hole. However, the model overestimates the length of the scour hole.
机译:大坝施工在世界各地的快速发展主要是为了水电站的目的。这些项目的一个重要结果是由过量水库水流过的溢洪道或底部出口的下游局部冲刷,与高速相关的溢洪道或底部出口。冲刷发展危及大坝基金会和河岸,破坏了液压结构的稳定性。在该研究中,进行详细的三维(3D)流模拟以研究复杂的流体沉积物相互作用,导致近底射流下游的冲刷孔和脊系统的形成。三种不同的床位方程,包括Meyer-Peter-Muller,Nielsen和Van Rijn公式,用于计算床上负载运输速率。与一系列可用实验数据的比较显示Meyer-Peter-Muller方程导致比其他两个关系更好的预测。评估了不同湍流模型的性能,以重现对实验数据的速度和冲刷特性的垂直谱。与相应的实验结果相比,冲泡孔脊系统的垂直和水平剖面也与相应的实验系统进行比较。数值模型令人满意地再现代表冲刷孔的几何参数。但是,该模型高估了冲刷孔的长度。

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