INNER-OUTER INTERACTIONS IN A TURBULENT BOUNDARY LAYER OVERLYING COMPLEX ROUGHNESS

G. Pathikonda, K. Christensen
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引用次数: 41

Abstract

Hot-wire measurements were performed in turbulent flow overlying a smooth and a rough wall (the latter a multiscale topography) with the intent of investigating the details of inner–outer interactions. One-point measurements with a traversing probe were made to investigate the distribution of streamwise turbulent kinetic energy and large scale–small scale interactions at different regions of the smoothand rough-wall cases. In addition, 2-probe simultaneous measurements were conducted and enabled investigation of inner–outer interactions wherein the large scales were always sampled in the outer layer. After identifying different regions across the boundary layer in the timedelayed correlation maps of the amplitude modulation coefficient, roughness-induced changes to the near-wall behavior were investigated. It was observed that the amplitude modulation influence on the near-wall small scales by the large scales in logarithmic region appears augmented in the rough-wall case compared to smooth-wall flow. Further, among the different spanwise positions investigated over the complex roughness (previously found to induce persistent secondary flows owing to spanwise heterogeneity of the topography), the low-momentum pathway region tended to have a ‘stronger’ interaction compared to the high-momentum pathway position.
复杂粗糙度上紊流边界层的内外相互作用
热线测量是在平滑和粗糙壁面(后者是多尺度地形)上的湍流中进行的,目的是研究内外相互作用的细节。采用单点测量方法研究了光滑壁面和粗糙壁面不同区域的湍流动能分布和大尺度-小尺度相互作用。此外,还进行了双探针同时测量,使内外部相互作用的研究成为可能,其中大尺度总是在外层取样。在调幅系数的时滞相关图中识别出边界层上的不同区域后,研究了粗糙度对近壁行为的影响。观察到,与光滑壁面流动相比,粗壁情况下对数区域大尺度对近壁面小尺度的调幅影响有所增强。此外,在复杂粗糙度的不同展向位置(先前发现由于地形的展向异质性导致持续的二次流动)中,与高动量路径位置相比,低动量路径区域往往具有“更强”的相互作用。
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