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Investigation of Mach Number Dependence on the Richtmyer-Meshkov Mixing Transition for a Shocked Heavy-Gas Curtain

机译:对震动重型气幕的Richtmyer-Meshkov混合过渡的马赫数依赖的研究

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Based on the information presented here, the flow for each M case appears to be transitioning toward isotropy based upon the velocity fluctuation PDFs, and a visual inspection of the PLIF images. Yet, only Mach 1.36 and Mach 1.50 experiments share some of the minimum requirements for turbulence, in the classical sense, to exist. In both cases, Rer is above 10000, and it is possible for there to exist an inertial range (λ_1/λ_v > 1). Even so, it is probably more accurate to label these flows 'transitional' within the framework of classical turbulence definitions. Mach 1.21 experiments, by these requirements, are not turbulent.
机译:基于此处呈现的信息,基于速度波动PDF,每个M个外壳的流量看起来朝向各向同性转换,以及PLIF图像的目视检查。然而,只有Mach 1.36和Mach 1.50实验就在经典意义上分享了湍流的一些最低要求。在这两种情况下,RER高于10000,并且可以存在惯性范围(λ_1/λ_v> 1)。即便如此,在经典湍流定义的框架内标记这些流动“过渡”可能更准确。 Mach 1.21实验,通过这些要求,不是湍流。

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