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Characterization of the shear layer in separated shock/turbulent boundary layer interactions

机译:分离冲击/湍流边界层相互作用中剪切层的表征

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摘要

A thorough characterization of the shear layer that exists in large eddy simulation data of three separated, compression ramp-generated shock/turbulent boundary layer interactions is presented. Free stream Mach numbers ahead of the separation shock are 2.9, 7.2 and 9.1. The shear layers produced by the separation in these flows have convective Mach numbers of 1.0, 1.9 and 2.0, respectively. It is found that the separation shear layers share many properties associated with canonical compressible mixing layers. A region of approximate similarity is found in each where it is possible to collapse the mean flow profiles into nearly a single similarity profile. Large mixing-layer-like vortical rollers are found in the shear layers and these are shown to become increasingly three-dimensional with increasing convective Mach number. The relation between the peak turbulence stress and the spreading rate was found to be consistent with mixing layer data and mixing layer theory derived from dimensional analysis. Turbulent kinetic energy and Reynolds stress budget analysis revealed that, although the streamwise turbulence production is greater than the canonical mixing layer, the transfer of turbulence energy by the pressure-strain terms and the energy drain by viscosity terms both show similar behaviour to mixing layer data at matching convective Mach number. As a result, the spreading rate and turbulence anisotropy decrease with increasing . These conclusions are aided by an accurate and direct measurement of the vortex convection velocity determined from enhanced two-point correlations in the shear flow. The usefulness of studying the shock/turbulent boundary layer flow in this manner is emphasized.
机译:本文对三个分离的、压缩斜坡产生的激波/湍流边界层相互作用的大涡模拟数据中存在的剪切层进行了全面的描述。分离激波前的自由流马赫数分别为2.9、7.2和9.1。这些流动中分离产生的剪切层的对流马赫数分别为1.0、1.9和2.0。研究发现,分离剪切层具有许多与正则可压缩混合层相关的性质。在每个区域中都有一个近似相似的区域,在该区域中,平均流量剖面可以折叠为几乎一个相似的剖面。在剪切层中发现了类似漩涡滚柱的大型混合层,随着对流马赫数的增加,这些混合层变得越来越三维。湍流应力峰值与扩散速率之间的关系符合混合层数据和量纲分析得出的混合层理论。湍流动能和雷诺应力收支分析表明,尽管流向湍流产生量大于标准混合层,但压力-应变项的湍流能量传递和粘性项的能量消耗都显示出与匹配对流马赫数下混合层数据相似的行为。结果表明,扩散速率和湍流各向异性随温度的增加而减小。通过对剪切流中增强的两点关联确定的涡旋对流速度的精确和直接测量,这些结论得到了帮助。强调了以这种方式研究激波/湍流边界层流动的有用性。

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