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首页> 外文期刊>Journal of Computational Physics >A front-tracking/ghost-fluid method for fluid interfaces in compressible flows
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A front-tracking/ghost-fluid method for fluid interfaces in compressible flows

机译:可压缩流中流体界面的前跟踪/鬼流体方法

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摘要

A front-tracking/ghost-fluid method is introduced for simulations of fluid interfaces in compressible flows. The new method captures fluid interfaces using explicit front-tracking and defines interface conditions with the ghost-fluid method. Several examples of multiphase flow simulations, including a shock-bubble interaction, the Richtmyer-Meshkov instability, the Rayleigh-Taylor instability, the collapse of an air bubble in water and the breakup of a water drop in air, using the Euler or the Navier-Stokes equations, are performed in order to demonstrate the accuracy and capability of the new method. The computational results are compared with experiments and earlier computational studies. The results show that the new method can simulate interface dynamics accurately, including the effect of surface tension. Results for compressible gas-water systems show that the new method can be used for simulations of fluid interface with large density differences.
机译:引入了一种前跟踪/鬼流体方法来模拟可压缩流中的流体界面。新方法使用显式的前向跟踪捕获流体界面,并使用ghost-fluid方法定义界面条件。多相流模拟的几个示例,包括冲击气泡相互作用,Richtmyer-Meshkov不稳定性,Rayleigh-Taylor不稳定性,气泡在水中的破裂以及使用Euler或Navier的水滴的破裂执行斯托克斯方程,以证明新方法的准确性和功能。将计算结果与实验和较早的计算研究进行比较。结果表明,该新方法可以准确模拟界面动力学,包括表面张力的影响。可压缩气-水系统的结果表明,该新方法可用于模拟具有大密度差的流体界面。

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