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Generalized rapid-distortion theory on transversely sheared mean flows with physically realizable upstream boundary conditions : application to trailing edge problem

机译:具有可物理实现的上游边界条件的横剪平均流的广义快速失真理论:在后缘问题中的应用

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摘要

This paper is concerned with rapid distortion theory on transversely sheared mean flows which (among other things) can be used to analyze the unsteady motion resulting from the interaction of a turbulent shear flow with a solid surface. It extends previous analyses of Goldstein, Afsar & Leib (2013 a, b) which showed that the unsteady motion is completely determined by specifying two arbitrary convected quantities. The present paper uses a pair of previously derived conservation laws to derive upstream boundary conditions that relate these quantities to experimentally measurable flow variables. The result is dependent on the imposition of causality on an intermediate variable that appears in the conservation laws. Goldstein et al (2013a) related the convected quantities to the physical flow variables at the location of the interaction, but the results were not generic and hard to reconcile with experiment. That problem does not occur in the present formulation which leads to a much simpler and more natural result than the one given in Goldstein et al (2013a). We also show that the present formalism yields better predictions of the sound radiation produced by the interaction of a two-dimensional jet with the downstream edge of a flat plate than the Goldstein et al (2013a) result. The role of causality is also discussed.
机译:本文涉及横向剪切平均流的快速变形理论,该理论(除其他事项外)可用于分析湍流剪切流与固体表面相互作用所引起的非定常运动。它扩展了对Goldstein,Afsar和Leib(2013 a,b)的先前分析,该分析表明,通过指定两个任意对流量可以完全确定非定常运动。本文使用一对先前导出的守恒定律来导出上游边界条件,这些条件将这些数量与实验可测量的流量变量相关联。结果取决于因果关系对守恒定律中出现的中间变量的强加。 Goldstein等人(2013a)将对流量与相互作用位置处的物理流量变量相关联,但结果并不通用,难以与实验相吻合。与Goldstein等人(2013a)给出的结果相比,本发明的配方中不会出现该问题,从而导致更简单,更自然的结果。我们还表明,与Goldstein等人(2013a)的结果相比,目前的形式主义对二维射流与平板下游边缘相互作用产生的声辐射产生了更好的预测。还讨论了因果关系的作用。

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