首页> 外文期刊>International Journal for Numerical Methods in Fluids >A well-balanced upstream flux-splitting finite-volume scheme for shallow-water flow simulations with irregular bed topography
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A well-balanced upstream flux-splitting finite-volume scheme for shallow-water flow simulations with irregular bed topography

机译:床面不规则地形的浅水流模拟的平衡良好的上游通量分裂有限体积方案

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摘要

This study extends the upstream flux-splitting finite-volume (UFF) scheme to shallow water equations with source terms. Coupling the hydrostatic reconstruction method (HRM) with the UFF scheme achieves a resultant numerical scheme that adequately balances flux gradients and source terms. The proposed scheme is validated in three benchmark problems and applied to flood flows in the natural/irregular river with bridge pier obstructions. The results of the simulations are in satisfactory agreement with the available analytical solutions, experimental data and field measurements. Comparisons of the present results with those obtained by the surface gradient method (SGM) demonstrate the superior stability and higher accuracy of the HRM. The stability test results also show that the HRM requires less CPU time (up to 60%) than the SGM. The proposed well-balanced UFF scheme is accurate, stable and efficient to solve flow problems involving irregular bed topography.
机译:这项研究将上游通量分裂有限体积(UFF)方案扩展到带有源项的浅水方程。将流体静力重建方法(HRM)与UFF方案结合使用,可以得到足以平衡通量梯度和源项的最终数值方案。该方案在三个基准问题上得到了验证,并被应用于具有桥墩障碍物的自然/不规则河流中的洪水流量。模拟结果与可用的分析解决方案,实验数据和现场测量结果令人满意。本结果与通过表面梯度法(SGM)获得的结果的比较表明,HRM具有出色的稳定性和更高的准确性。稳定性测试结果还显示,与SGM相比,HRM需要更少的CPU时间(最多60%)。所提出的均衡的UFF方案是准确,稳定和有效的解决涉及不规则床形的流动问题。

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