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Explicit solution to the exact Riemann problem and application in nonlinear shallow-water equations

机译:精确黎曼问题的显式解及其在非线性浅水方程中的应用

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The Riemann solver is the fundamental building block in the Godunov-type formulation of many nonlinear fluid-flow problems involving discontinuities. While existing solvers are obtained either iteratively or through approximations of the Riemann problem, this paper reports an explicit analytical solution to the exact Riemann problem. The present approach uses the homotopy analysis method to solve the nonlinear algebraic equations resulting from the Riemann problem. A deformation equation defines a continuous variation from an initial approximation to the exact solution through an embedding parameter. A Taylor series expansion of the exact solution about the embedding parameter provides a series solution in recursive form with the initial approximation as the zeroth-order term. For the nonlinear shallow-water equations, a sensitivity analysis shows fast convergence of the series solution and the first three terms provide highly accurate results. The proposed Riemann solver is implemented in an existing finite-volume model with a Godunov-type scheme. The model correctly describes the formation of shocks and rarefaction fans for both one and two-dimensional dam-break problems, thereby verifying the proposed Riemann solver for general implementation.
机译:黎曼求解器是Godunov型公式中许多涉及不连续性的非线性流体流动问题的基本构成部分。现有的求解器可以迭代或通过对Riemann问题的近似获得,但本文报告了对精确Riemann问题的显式解析解。本方法使用同伦分析方法来求解由Riemann问题引起的非线性代数方程。变形方程式通过嵌入参数定义了从初始近似值到精确解的连续变化。关于嵌入参数的精确解的泰勒级数展开式提供了以初始近似为零阶项的递归形式的级数解。对于非线性浅水方程,灵敏度分析显示该级数解的快速收敛性,并且前三个项提供了高精度的结果。拟议的Riemann求解器是在具有Godunov型方案的现有有限体积模型中实现的。该模型正确地描述了一维和二维溃坝问题的冲击和稀疏风扇的形成,从而验证了拟议的黎曼求解器的一般实现。

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