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Effects of spanwise spacing on large-scale secondary flows in rough-wall turbulent boundary layers

机译:翼展间距对粗糙壁湍流边界层大尺度二次流的影响

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摘要

Large-scale secondary flows can sometimes appear in turbulent boundary layers formed over rough surfaces, creating low- and high-momentum pathways along the surface (Barros & Christensen, J. Fluid Mech., vol. 748, 2014, R1). We investigate experimentally the dependence of these secondary flows on surface/flow conditions by measuring the flows over streamwise strips of roughness with systematically varied spanwise spacing. We find that the large-scale secondary flows are accentuated when the spacing of the roughness elements is roughly proportional to the boundary layer thickness ${\it\delta}$?, and do not appear for cases with finer spacing. Cases with coarser spacing also generate ${\it\delta}$?-scale secondary flows with tertiary flows in the spaces in between. These results show that the ratio of the spanwise length scale of roughness heterogeneity to the boundary layer thickness is a critical parameter for the occurrence of these secondary motions in turbulent boundary layers over rough walls.
机译:有时会在粗糙表面上形成的湍流边界层中出现大规模的二次流动,从而在表面上形成低动量和高动量的路径(Barros&Christensen,J。Fluid Mech。,第748卷,2014,R1)。我们通过测量具有系统变化的展向间距的流向粗糙度带上的流,通过实验研究了这些次级流对表面/流条件的依赖性。我们发现,当粗糙度元素的间距与边界层厚度$ {\ it \ delta} $?大致成比例时,大规模的二次流会加重,而对于间距较小的情况则不会出现。间隔较粗的情况还会生成$ {\ it \ delta} $?规模的二次流,其间有三次流。这些结果表明,粗糙度异质性的展向长度尺度与边界层厚度之比是在粗糙壁上湍流边界层中发生这些二次运动的关键参数。

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