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首页> 外文期刊>Canadian Journal of Physics >Dynamical behavior of the Richtmyer-Meshkov instability-induced turbulent mixing under multiple shock interactions
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Dynamical behavior of the Richtmyer-Meshkov instability-induced turbulent mixing under multiple shock interactions

机译:Richtmyer-Meshkov不稳定诱导湍流混合在多次休克相互作用下的动态行为

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摘要

The dynamical behavior of Richtmyer-Meshkov instability-induced turbulent mixing under multiple shock interactions is investigated by large-eddy simulation. After the initial shockwave-interface interaction, the transmitted wave reverberates between the accelerated interface and the end-wall of the shock tube to form a process of multiple shock interactions. The turbulent mixing zone grows in a different manner under each of the impingements. After the initial shock, it grows as a power law of time. After the reshock and the impingement of the reflected rarefaction wave, it grows with time as a different negative exponential law. When the impingement of the reflected compression wave completes, it grows approximately in a linear fashion. The statistical quantities in the turbulent mixing zone evolve with time in a similar way under multiple impingements, and after the impingement of the reflected compression wave, they all decay asymptotically. Therefore, the turbulent mixing zone behaves in a statistically self-similar pattern. Even though the impingements of different waves result in different abrupt changes of the characteristic scale parameters of mixing turbulence, as a whole, the characteristic scales present a feature of growth, and the characteristic-scale Reynolds numbers present a feature of decay. The mixing flow is continuously anisotropic, yet the anisotropy weakens gradually. Therefore the development of turbulent mixing presents a trend of isotropy.
机译:大型涡流模拟研究了Richtmyer-Meshkov不稳定诱导的湍流混合的动态行为。在初始冲击波接口相互作用之后,透射波在加速接口和冲击管的端壁之间混响以形成多次休克相互作用的过程。湍流混合区在每种切片下以不同的方式增长。在初始休克之后,它会随着时间的推移而发展。在重新座袋和反射稀疏波的冲击之后,它随着时间的与负负指数律而增长。当反射压缩波的冲击完成时,它大致以线性方式增长。湍流混合区中的统计量随着多次切割而在类似的方式中随时间演变,并且在反射压缩波的冲击之后,它们都衰减渐近。因此,湍流混合区的行为在统计学上自相似的模式。尽管不同波的切割导致混合湍流的特征尺度参数的不同突变变化,但整体地,特征尺度存在增长的特征,并且特征率雷诺数具有衰减的特征。混合流动是连续各向异性的,但各向异性逐渐削弱。因此,湍流混合的发展具有各向同性的趋势。

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