首页> 外文期刊>International Journal of Modern Physics C (IJMPC) >INTERACTION OF SHOCK WAVE WITH MULTI-FLUIDS INTERFACE USING QUADRILATERAL-BASED ADAPTIVE MESH
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INTERACTION OF SHOCK WAVE WITH MULTI-FLUIDS INTERFACE USING QUADRILATERAL-BASED ADAPTIVE MESH

机译:基于四边形自适应网格的激波与多流体界面的相互作用

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摘要

In this paper, the interaction of shock waves with multi-fluids interfaces is investigated by numerical simulations using unstructured quadrilateral adaptive meshes. In order to obtain a detailed structure of the interface, a solution adaptive method for compressible multi-fluid flows developed by Zheng et al. is employed. Firstly, the method is verified by a planar shock and interface interaction problem, which is compared with the front tracking method for the Richtmyer–Meshkov instability problem. Following the verification, the interaction between a circular shock and a sinusoidally perturbed circular interface in cylinder vessel is firstly investigated in our paper. The results show that the solution adaptive method can be employed to study the compressible multi-fluid cases with relatively complex geometry as well as capturing the fine details of interfacial structures of the interaction.
机译:本文利用非结构化四边形自适应网格,通过数值模拟研究了冲击波与多流体界面的相互作用。为了获得接口的详细结构,Zheng等人开发了一种适用于可压缩多流体流的解决方案自适应方法。被雇用。首先,通过平面冲击和界面相互作用问题验证了该方法,并将其与用于Richtmyer-Meshkov不稳定性问题的前跟踪方法进行了比较。经过验证,本文首先研究了圆筒形容器中圆形冲击与正弦扰动圆形界面之间的相互作用。结果表明,该解决方案自适应方法可用于研究具有相对复杂几何形状的可压缩多流体情况,以及捕获相互作用的界面结构的精细细节。

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