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Recent years the modify ghost fluid method (MGFM) and the real ghost fluid method (RGFM) based on Riemann problem have been developed for multimedium compressible flows. According to authors, these methods have only been used with the level set technique to track the interface. In this paper, we combine the MCFM and the RGFM respectively with front tracking method, for which the fluid interfaces are explicitly tracked by connected points. The method is tested with some one-dimensional problems, and its applicability is also studied. Furthermore, in order to capture the interface more accurately, especially for strong shock impacting on interface, a shock monitor is proposed to determine the initial states of the Riemann problem. The present method is applied to various one- dimensional problems involving strong shock-interface interaction. An extension of the present method to two dimension is also introduced and preliminary results are given.  相似文献   
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本文考虑如下带有非线性非局部流量边界条件的拟线性抛物型方程  相似文献   
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王东红  赵宁  刘剑明 《计算物理》2009,26(4):510-516
针对多介质流体界面追踪(Front Tracking)方法,通过在界面处构造Riemann问题,研究激波限制器应用过程中的若干基本问题.针对气-气和气-水界面问题,通过比较平均守恒误差、L1误差和激波强度随参数的变化情况,给出激波限制器参数可以在0.3附近选取.同时,通过理论分析和数值算例发现,当有激波接近界面时,选择激波波后状态作为界面处Riemann问题的初始状态,数值模拟结果较满意.  相似文献   
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