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Large eddy simulation of liquid jet primary breakup in supersonic air crossflow

机译:超声速空气横流中液体射流一次破碎的大涡模拟

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The paper proposed a two-phase flow Large Eddy Simulation (LES) algorithm for atomization in supersonic gas flow. A coupled Level Set and Volume of Fluid (VOF) interface tracking method is used. The supersonic gas flow is solved using a compressible flow solver, and the liquid phase is solved using an incompressible flow solver. Appropriate boundary conditions are specified on the interface for both solvers to correctly capture the interaction between the gas and liquid. The water jet primary breakup in a supersonic air crossflow is well predicted, with the shock waves ahead of the liquid column and drops/ligaments properly captured. Two kinds of vortices respectively relating to surface breakup and column breakup are observed. Surface waves on the windward side of the liquid jet are numerically reproduced, and the wavelength is well correlated to an effective Weber number which is determined by the gas flow behind the shock. As gas flow goes across the strong shock wave ahead of liquid column, the disintegrating aerodynamic force is weakened. Rayleigh-Taylor instability is found to be responsible for the development of surface waves which causes column breakup. It is demonstrated that LES can produce almost the same breakup morphology as an under-resolved DNS. (C) 2016 Elsevier Ltd. All rights reserved.
机译:提出了一种超声速气流雾化的两相流大涡模拟(LES)算法。使用了耦合的液位和液位(VOF)接口跟踪方法。使用可压缩流动求解器求解超声速气流,并使用不可压缩流动求解器求解液相。在界面上为两个求解器指定了适当的边界条件,以正确捕获气体和液体之间的相互作用。可以很好地预测超音速空气横流中的水射流初次破裂,并且在液柱之前将冲击波和液滴/结扎物正确捕获。观察到两种涡旋分别与表面破裂和柱破裂有关。在液体射流的迎风侧上的表面波被数值再现,并且波长与有效韦伯数很好地相关,该有效韦伯数由冲击后的气流确定。当气流经过液柱前方的强烈冲击波时,分解的空气动力减弱。发现瑞利-泰勒不稳定性是引起表面波发展的原因,该表面波导致柱破裂。事实证明,LES可以产生与解析不足的DNS几乎相同的分解形态。 (C)2016 Elsevier Ltd.保留所有权利。

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