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A relaxation Riemann solver for compressible two-phase flow with phase transition and surface tension

机译:具有相变和表面张力的可压缩两相流动的松弛Riemann求解器

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The dynamics of two-phase flows depend crucially on interfacial effects like surface tension and phase transition. A numerical method for compressible inviscid flows is proposed that accounts in particular for these two effects. The approach relies on the solution of Riemann-like problems across the interface that separates the liquid and the vapour phase. Since the analytical solutions of the Riemann problems are only known in particular cases an approximative Riemann solver for arbitrary settings is constructed. The approximative solutions rely on the relaxation technique. The local well-posedness of the approximative solver is proven. Finally we present numerical experiments for radially symmetric configurations that underline the reliability and efficiency of the numerical scheme.
机译:两相流的动力学关键取决于界面效应,例如表面张力和相变。提出了一种可压缩的无粘性流的数值方法,该方法特别考虑了这两种影响。该方法依赖于解决跨越液相和气相的界面上的黎曼式问题的解决方案。由于仅在特定情况下才知道Riemann问题的解析解,因此构造了任意设置的近似Riemann解算器。近似解依赖于松弛技术。证明了近似求解器的局部适定性。最后,我们提出了径向对称构型的数值实验,突显了数值方案的可靠性和效率。

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