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Numerical simulations of the two-dimensional multimode Richtmyer-Meshkov instability

机译:二维多模式Richtmyer-Meshkov不稳定性的数值模拟

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The two-dimensional Richtmyer-Meshkov instability occurs as shock waves pass through a perturbed material interface, triggering transition to an inhomogeneous turbulence variable density flow. This paper presents a series of large-eddy-simulations of the two dimensional turbulent RM instability and compares the results to the fully three dimensional simulations. There are two aims for this paper, the first is to explore what numerical resolution is required for a statistically converged solution for a two dimensional inhomogeneous flow field. The second aim is to elucidate the key differences in flow physics between the two dimensional and three dimensional Richtmyer-Meshkov instabilities, particularly their asymptotic self-similar regime. Convergence is achieved using 64 independent realisations and grid resolutions up to 4096(2) in the plane. It is shown that for narrowband cases the growth rate theta = 0.48 which is substantially higher than the three-dimensional equivalent. Mix measures are consistently lower compared to three-dimensional, and the kinetic energy distribution is homogeneous at late time. The broadband case has a similar initial growth rate as the three-dimensional case, with a marginally lower theta = 0.63. Mix is similar in magnitude, but is reducing at late time. The spectra in both cases exhibit the dual-cascade expected from two-dimensional turbulence. (C) 2015 AIP Publishing LLC.
机译:二维Richtmyer-Meshkov不稳定性发生在冲击波通过扰动的材料界面时,触发了向不均匀湍流变密度流的过渡。本文介绍了二维湍流RM不稳定性的一系列大涡模拟,并将其结果与完整的三维模拟进行了比较。本文有两个目标,第一个是探讨二维非均匀流场的统计收敛解需要什么数值分辨率。第二个目的是阐明二维和三维Richtmyer-Meshkov不稳定性之间,尤其是它们的渐近自相似状态,在流物理学上的关键差异。使用平面中的64个独立实现和高达4096(2)的网格分辨率可实现收敛。结果表明,对于窄带情况,增长率theta = 0.48,远高于三维等效值。混合尺寸始终低于三维尺寸,动能分布在后期均匀。宽带情况下的初始增长率与三维情况下相似,theta = 0.63略低。混合的大小相似,但在后期有所减少。两种情况下的光谱均显示出二维湍流所预期的双级联。 (C)2015 AIP Publishing LLC。

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