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Experimental and high-order LES analysis of the flow in near-wall region of a square cylinder

机译:方筒近壁区域流动的实验和高阶LES分析

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摘要

A coupled experimentalumerical analysis of turbulent flow past a square cylinder is performed at the ERCOFTAC Reynolds number Re = U_∞D/v = 21,400, where U_∞ is the inflow velocity and D the cylinder height. Complementary Laser Doppler Velocimetry (LDV) and high-order large-eddy simulations (LES) approaches, based on a spectral vanishing technique (SW-LES), provide a comprehensive data base including both instantaneous data and post-processed statistics. Beyond these results, an achievement of the paper is to investigate the coherent structures developing on the sides and in the wake of the cylinder with a special focus on the flow features in the near-wall region. The flow is found to separate at the leading edge of the cylinder with the occurence of three-dimensional Kelvin-Helmholtz (KH) pairings localized in the separating shear layer. The interaction between these KH vortical structures and Von Karman vortex shedding (VK) in the near wake is discussed based on both visualisations and frequency analysis. In particular, signatures of VK and KH vortical structures are found on velocity time samples.
机译:通过ERCOFTAC雷诺数Re =U_∞D/ v = 21,400时,对经过一个方形圆柱体的湍流进行了实验/数值的耦合分析,其中U_∞是流入速度,D是圆柱体高度。互补激光多普勒测速(LDV)和高阶大涡模拟(LES)方法基于光谱消失技术(SW-LES),提供了包括瞬时数据和后处理统计信息在内的综合数据库。除这些结果外,本文的一项成就是研究圆柱体侧面和尾部形成的相干结构,并特别关注近壁区域的流动特征。发现流在圆柱体的前缘处分离,并且出现了位于分离剪切层中的三维开尔文-亥姆霍兹(KH)对。基于可视化和频率分析,讨论了这些KH涡旋结构与近尾Von Karman涡旋脱落(VK)之间的相互作用。特别是在速度时间样本上发现了VK和KH涡旋结构的特征。

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