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SWE-SPHysics Simulation of Dam Break Flows at South-Gate Gorges Reservoir

机译:南门峡水库溃坝水流的SWE-SPHysics模拟

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This paper applied a Smoothed Particle Hydrodynamics (SPH) approach to solve Shallow Water Equations (SWEs) to study practical dam-break flows. The computational program is based on the open source code SWE-SPHysics, where a Monotone Upstream-centered Scheme for Conservation Laws (MUSCL) reconstruction method is used to improve the Riemann solution with Lax-Friedrichs flux. A virtual boundary particle method is applied to treat the solid boundary. The model is first tested on two benchmark collapses of water columns with the existence of downstream obstacle. Subsequently the model is applied to forecast a prototype dam-break flood, which might occur in South-Gate Gorges Reservoir area of Qinghai Province, China. It shows that the SWE-SPH modeling approach could provide a promising simulation tool for practical dam-break flows in engineering scale.
机译:本文应用平滑粒子流体动力学(SPH)方法求解浅水方程组(SWE),以研究实际的溃坝流。该计算程序基于开放源代码SWE-SPHysics,其中采用了以单调上游为中心的守恒法则(MUSCL)重建方法,以使用Lax-Friedrichs通量来改进Riemann解。应用虚拟边界粒子方法处理固体边界。该模型首先在有下游障碍物存在的水柱的两个基准塌陷上进行测试。随后,该模型被用于预测可能发生在中国青海省南门三峡水库地区的溃坝洪水原型。它表明,SWE-SPH建模方法可以为工程规模的实际溃坝流提供有希望的仿真工具。

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