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Linearised Structures in Shear Turbulence

机译:剪切湍流中的线性化结构

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The relevance of linear transitional mechanisms in fully turbulent shear flows, and in particular of the Orr-like inviscid transient amplification of disturbances, is explored in the context of the prediction of bursting behaviour. Although the logarithmic layer of wall-bounded turbulence is used as the primary example, most conclusions also apply to turbulent flows with a uniform shear, as well as probably to other flows with linearly stable mean profiles. They are dominated by large-scale streamwise-velocity streaks and intermittent bursts of the cross-shear velocity. When the linearised problem is solved in the limit of small viscosity, it has previously been shown that many properties, such as the bursting time and length scales, the energy fluxes between components, and the mean inclination angles, agree well between linear and nonlinear systems. The question addressed here is whether the structures predicted by the linearised solution can be traced in fully nonlinear simulations. It is found that the largest scales of strong bursts are well described linearly, but that the weaker fluctuations are not.
机译:在预测爆裂行为的背景下,探索了线性过渡机制在全湍流剪切流中的相关性,特别是与扰动的Orr状无粘性瞬态放大的相关性。尽管使用壁对流湍流的对数层作为主要示例,但大多数结论也适用于剪切均匀的湍流,以及可能具有线性稳定平均轮廓的其他流。它们以大规模的流向速度条纹和横向剪切速度的间歇性爆发为主。当线性化问题在小粘度范围内得到解决时,以前已经证明,线性和非线性系统之间的许多特性(例如破裂时间和长度尺度,组分之间的能量通量以及平均倾斜角)都非常一致。此处解决的问题是,线性化解所预测的结构是否可以在完全非线性的模拟中进行跟踪。已经发现,强烈爆发的最大尺度被很好地线性描述,但是较弱的波动却没有。

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