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Simulation of hydraulic shock waves by hybrid flux-splitting schemes in finite volume method

机译:有限体积法中的混合磁通分裂法模拟液压冲击波

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摘要

In the framework of the finite volume method, a robust and easily implemented hybrid flux-splitting finite-volume (HFF) scheme is proposed for simulating hydraulic shock waves in shallow water flows. The hybrid flux-splitting algorithm without Jacobian matrix operation is established by applying the advection upstream splitting method to estimate the cell-interface fluxes. The scheme is extended to be second-order accurate in space and time using the predictor-corrector approach with monotonic upstream scheme for conservation laws. The proposed HFF scheme and its second-order extension are verified through simulations of the 1D idealized dam-break problem, the 2D oblique hydraulic shock-wave problem, and the 2D dam-break experiments with channel contraction as well as wet/dry beds. Comparisons of the HFF and several well-known first-order upwind schemes are made to evaluate numerical performances. It is demonstrated that the HFF scheme captures the discontinuities accurately and produces no entropy-violating solutions. The HFF scheme and its second-order extension are proven to achieve the numerical benefits combining the efficiency of flux-vector splitting scheme and the accuracy of flux-difference splitting scheme for the simulation of hydraulic shock waves.
机译:在有限体积法的框架下,提出了一种鲁棒且易于实现的混合流量分裂有限体积(HFF)方案,用于模拟浅水流中的水力冲击波。通过采用对流上游分裂法估计细胞界面通量,建立了没有雅可比矩阵运算的混合通量分裂算法。该方案使用预测器-校正器方法和用于保护律的单调上游方案扩展到时空精度为二阶。通过对一维理想化溃坝问题,二维斜水力冲击波问题以及具有通道收缩以及干/湿床的二维溃坝实验进行仿真,验证了所提出的HFF方案及其二阶扩展。比较了HFF和几种著名的一阶迎风方案,以评估数值性能。结果表明,HFF方案可以准确地捕获不连续性,并且不会产生违反熵的解。事实证明,HFF方案及其二阶扩展结合了通量-矢量分裂方案的效率和通量-差异分裂方案的精度,从而为数值模拟水力冲击波带来了数值收益。

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