基于sharp - interface的冲击跌落破碎直接数值模拟

J. Kaiser, S. Adami, N. Adams
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引用次数: 3

摘要

本文给出了空气中液滴激波破裂的二维和三维数值结果。我们采用保守的界面交互模型来表示清晰的界面,并采用基于分块的多分辨率方案来自适应地细化网格。数值模拟的效果,如通量重建方案和尺度分离模型的使用,处理未分解的界面段,进行了研究。与之前的研究类似(Meng, 2016),我们确定了在一定马赫数下液滴破裂的两种主要机制,在我们的模拟中,液滴变平和片状剥离同时发生并相互影响。三维模拟显示了液滴的扁化机理和蘑菇状变形。它们还解释了在液滴尾流中出现再循环区的原因。二维模拟已经显示出在液滴平坦化过程中和之后发生的薄片剥离机制。小薄片从水柱的上游和下游出现,而主薄片在液滴赤道形成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Direct Numerical Simulation of Shock-Induced Drop Breakup with a Sharp-Interface-Method
We present twoand three-dimensional numerical results of the shock-induced breakup of a liquid droplet in air. We apply a conservative interface interaction model for sharp-interface representation and a block-based multi-resolution scheme to adaptively refine our mesh. Numerical modeling effects, such as the flux reconstruction scheme and the use of a scale separation model, that treats non-resolved interface segments, are investigated. Similarly as a previous study (Meng, 2016), we identify two dominant mechanisms of droplet breakup at certain Mach numbers flattening of the droplet and sheet stripping occurring simultaneously and influencing each other in our simulations. Three-dimensional simulations show the flattening mechanism and the mushroom-like deformation of the droplet. They also explain the occurrence of a recirculation zone in the droplet wake. The two-dimensional simulations already exhibit the sheet stripping mechanism, which occurs during and after droplet flattening. Small sheets emerge from both the upstream and the downstream side of the water column, while the main sheet develops at the droplet equator.
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