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首页> 外文期刊>Journal of Fluid Mechanics >Dynamics of shear-layer coherent structures in a forced wall-bounded flow
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Dynamics of shear-layer coherent structures in a forced wall-bounded flow

机译:强制壁限流中剪切层相干结构的动态

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摘要

A model problem for analysing the interaction between coherent structures in shear flows with the presence of a convective instability is proposed in this work. Starting from Couette flow, a permanent forcing in the shape of a hyperbolic tangent is introduced in the laminar equations, leading to a wall-bounded flow with an inflection point, which triggers a hydrodynamic instability. Temporal linear stability analysis applied to this new flow model shows that this flow is unstable at low Reynolds numbers, giving rise to Kelvin-Helmholtz-like vortices. Due to the presence of shear, streaks and rolls (streamwise vortices), predicted by resolvent analysis, are also present in the flow, and these structures will interact with vortices via oblique waves. Results of locally parallel analysis inspired the design of a computational box for a direct numerical simulation of such flow and the numerical results exhibit a limit cycle involving streaks, vortices, rolls, oblique waves and the mean flow, so that the flow becomes periodically unstable for the present case. The flow dynamics is shown to reproduce some of the features of jets and mixing layers, such as jitter and translational instability, showing that the present model can potentially clarify some of the phenomena involved in the turbulent dynamics of such flows.
机译:本文提出了一个分析对流不稳定剪切流中相干结构相互作用的模型问题。从Couette流开始,在层流方程中引入双曲正切形状的永久力,导致具有拐点的壁面有界流,从而触发流体动力不稳定性。对这种新流动模型进行的时间线性稳定性分析表明,这种流动在低雷诺数下是不稳定的,会产生开尔文-亥姆霍兹涡。由于剪切的存在,通过预解分析预测的条纹和滚转(流向涡)也出现在流动中,这些结构将通过斜波与涡相互作用。局部平行分析的结果启发了对此类流动进行直接数值模拟的计算箱的设计,数值结果显示了一个极限环,包括条纹、漩涡、滚转、斜波和平均流,因此在当前情况下,流动变得周期性不稳定。结果表明,流动动力学再现了射流和混合层的一些特征,如抖动和平移不稳定性,表明本模型可能澄清此类流动的湍流动力学中涉及的一些现象。

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