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Numerical Study of the Dynamics and Structure of a Partial Dam-Break Flow Using the VOF Method

机译:vof方法的局部坝断裂动力学和结构的数值研究

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摘要

This paper aims to evaluate the effects of the opening width of a dam site on the evolution of partial dam-break waves over a fixed dry bed. The volume of fluid (VOF) method was used to scrutinize the propagation of the dam-break free surface. The model was validated using experimental data provided in the literature. At the same time, a sensitivity analysis was conducted on the size of the mesh cells and the turbulence model. However, the large eddy simulation (LES) method showed the highest accuracy among all the models. The results affirmed the crucial role of the opening width of the dam site in the flow characteristics. In this direction, diminishing the opening width results in a reduction of the wave-front travel distance, free surface gradient within the reservoir, outflow discharge values, damping the outflow hydrographs and decreasing the Froude number values at the dam site. Conversely, this leads to an increase in the air bubbles entrained within the wave and results in energy dissipation across the downstream channel.
机译:本文旨在评估大坝部位开口宽度对固定干燥床的偏坝断裂波进化的影响。流体(VOF)方法的体积用于仔细筛选坝断点的传播。使用文献中提供的实验数据验证该模型。同时,对网状电池和湍流模型的大小进行敏感性分析。然而,大型涡流模拟(LES)方法在所有模型中显示了最高精度。结果肯定了坝址在流动特性中的开口宽度的关键作用。在该方向上,减小开口宽度导致波浪前行程距离的减小,储存器内的自由表面梯度,流出排出值,阻尼流水文中的流出状态并降低坝位点的弗劳德数值。相反,这导致夹带在波内的气泡增加,并导致下游通道的能量耗散。

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