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Reynolds number dependence of turbulence induced by the Richtmyer-Meshkov instability using direct numerical simulations

机译:使用直接数值模拟,RichTmyer-Meshkov稳定性扰动湍流恢复依赖性

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This paper investigates the Reynolds number dependence of a turbulent mixing layer evolving from the Richtmyer-Meshkov instability using a series of direct numerical simulations of a well-defined narrowband initial condition for a range of different Reynolds numbers. The growth rate exponent of the integral width and mixed mass is shown to marginally depend on the initial Reynolds number , as does the minimum value of the molecular mixing fraction . The decay rates of turbulent kinetic energy and its dissipation rate are shown to decrease with increasing , while the spatial distribution of these quantities is biased towards the spike side of the layer. The normalised dissipation rate and scalar dissipation rate are calculated and are observed to be approaching a high Reynolds number limit. By fitting an appropriate functional form, the asymptotic values of these two quantities are estimated as and . Finally, an evaluation of the mixing transition criterion for unsteady flows is performed, showing that, even for the highest case, the turbulence in the flow is not yet fully developed. This is despite the observation of a narrow inertial range in the turbulent kinetic energy spectra, with a scaling close to , where k is the radial wavenumber.
机译:本文研究了由Richtmyer-Meshkov不稳定性演化而来的湍流混合层的雷诺数依赖性,采用一系列直接数值模拟方法,对不同雷诺数范围内定义良好的窄带初始条件进行了模拟。积分宽度和混合质量的增长率指数与初始雷诺数以及分子混合分数的最小值略有关系。湍流动能的衰减率及其耗散率随时间的增加而减小,而这些量的空间分布偏向于该层的尖峰侧。计算了归一化耗散率和标量耗散率,并观察到其接近高雷诺数极限。通过拟合适当的函数形式,这两个量的渐近值估计为和。最后,对非定常流动的混合过渡准则进行了评估,结果表明,即使在最高情况下,流动中的湍流也尚未充分发展。尽管在湍流动能谱中观察到一个狭窄的惯性范围,其标度接近,其中k是径向波数。

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