两相流体与线弹性固体耦合的松弛方法

Niklas Kolbe, Siegfried Müller
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引用次数: 0

摘要

本文采用最近开发的两个非守恒双曲线系统的耦合策略,研究了嵌入固体附近液体中的塌陷汽泡。为此,将线性守恒定律系统建模的弹性固体与等温流体的两相 Baer-Nunziato-typ 模型(一个非线性双曲系统,具有非守恒乘积)耦合。为了耦合这两个系统,采用了金-新松弛概念,并将其嵌入到二阶有限体积模型中。为了证明这一概念,在一个空间维度上进行了模拟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A relaxation approach to the coupling of a two-phase fluid with a linear-elastic solid
A recently developed coupling strategy for two nonconservative hyperbolic systems is employed to investigate a collapsing vapor bubble embedded in a liquid near a solid. For this purpose, an elastic solid modeled by a linear system of conservation laws is coupled to the two-phase Baer-Nunziato-type model for isothermal fluids, a nonlinear hyperbolic system with non-conservative products. For the coupling of the two systems the Jin-Xin relaxation concept is employed and embedded in a second order finite volume scheme. For a proof of concept simulations in one space dimension are performed.
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