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Onset of shear-layer instability at the interface of parallel Couette flows

机译:在平行Coute流的界面处发出剪切层不稳定性

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摘要

A non-planar or a bilateral mixing-layer is studied by means of a series of direct numerical simulations (DNSs). This mixing-layer forms at the interface of two co-current plane Couette flows of different Reynolds numbers. The current DNS study determined the conditions for the onset of shear-layer instability at the interface. The influence of different Reynolds number (of the co-current plane Couette flows) and their Reynolds number ratio on the mixing-layer is studied. A critical Reynolds number of about 500 (or more particularly one of the co-current plane Couette flows must be turbulent) and a Reynolds number ratio greater than 2 is required for the genesis of this bilateral shear-layer instability. Independent of the Reynolds number and the Reynolds number ratio, the temporal evolution of the shear-layer instability followed the same pattern. In addition, the oscillation frequency of the instability was found to increase with increasing Reynolds number and increasing Reynolds number ratio. Further, influence of instability on the local skin friction and the two-point correlation is elaborated on.
机译:通过一系列直接数值模拟(DNSS)研究非平面或双侧混合层。这种混合层在不同雷诺数的两个共流平面循环流的界面处形成。目前的DNS研究确定了界面处剪切层毫无稳定性发作的条件。研究了不同雷诺数(相流平面沟槽流动)的影响及其雷诺数比在混合层上。对于这种双侧剪切层不稳定性的成因需要临界雷诺数约为500的约500(或更特别是一个相应平面循环流动),并且需要大于2的雷诺数比大于2。独立于雷诺数和雷诺数比,剪切层不稳定性的时间演变遵循相同的图案。另外,发现不稳定性的振荡频率随着雷诺数的增加和增加雷诺数比而增加。此外,阐述了稳定性对局部皮肤摩擦和两点相关的影响。

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