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Analysis of dimensionality effect on shock wave boundary layer interaction in laminar hypersonic flows

机译:层状高超声速流中冲击波边界层相互作用的尺寸效应分析

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Present investigations are centered on passive control of shock wave boundary layer interaction (SWBLI) for double cone and double wedge configurations with leading edge bluntness. This study seeks the differences in the flow physics of SWBLI in case of two dimensional (2D) and axisymmetric flow fields. In-house developed second order accurate finite-volume 2D axisymmetric compressible flow solver is employed for these studies. It is observed that the idea of leading edge bluntness offers reduction in separation bubble for 2D flow fields, whereas it leads to enhanced separation zone in case of axisymmetric flow fields. Relevant flow physics is well explored herein using wall pressure profile and relative thicknesses of boundary layer and entropy layer. Thicker entropy layer and stronger favorable pressure gradient are found responsible for the possibility of separation control in case of 2D flow fields. Thin entropy layer due to three dimensional relieving effect and its swallowing by the boundary layer are attributed for higher separation bubble size in case of cone with range of radii under consideration. (C) 2016 Elsevier Inc. All rights reserved.
机译:目前的研究集中在对具有前缘钝性的双锥和双楔形结构的冲击波边界层相互作用(SWBLI)的被动控制上。本研究寻求二维(2D)和轴对称流场中SWBLI流动物理的差异。这些研究采用内部开发的二阶精确有限体积二维轴对称可压缩流量求解器。可以看出,前沿钝化的想法为2D流场减小了分离气泡,而在轴对称流场的情况下,则导致了分离区域的增加。本文使用壁压力曲线以及边界层和熵层的相对厚度很好地探索了相关的流动物理学。发现在二维流场的情况下,较厚的熵层和较强的有利压力梯度是可能进行分离控制的原因。在考虑到半径范围的情况下,由于三维减薄效应而产生的熵薄层及其被边界层吞噬的原因是分离气泡尺寸更大。 (C)2016 Elsevier Inc.保留所有权利。

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