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Scale growth of structures in the turbulent boundary layer with a rod-roughened wall

机译:带有杆粗糙壁的湍流边界层中结构的尺度生长

摘要

Direct numerical simulation of a turbulent boundary layer over a rod-roughened wall is performed with a long streamwise domain to examine the streamwise-scale growth mechanism of streamwise velocity fluctuating structures in the presence of two-dimensional (2-D) surface roughness. An instantaneous analysis shows that there is a slightly larger population of long structures with a small helix angle (spanwise inclinations relative to streamwise) and a large spanwise width over the rough-wall compared to that over a smooth-wall. Further inspection of time-evolving instantaneous fields clearly exhibits that adjacent long structures combine to form a longer structure through a spanwise merging process over the rough-wall; moreover, spanwise merging for streamwise scale growth is expected to occur frequently over the rough-wall due to the large spanwise scales generated by the 2-D roughness. Finally, we examine the influence of a large width and a small helix angle of the structures over the rough-wall with regard to spatial two-point correlation. The results show that these factors can increase the streamwise coherence of the structures in a statistical sense.
机译:用长的流向域对杆粗糙壁上的湍流边界层进行了直接数值模拟,以研究存在二维(2-D)表面粗糙度的流向速度波动结构的流向尺度生长机理。瞬时分析表明,与光滑壁面相比,粗糙壁上的长结构群体略大些,螺旋角较小(相对于水流方向为展向倾斜),而展宽方向的宽度较大。对随时间变化的瞬时场的进一步检查清楚地表明,相邻的长结构通过在粗糙壁上的跨度合并过程组合在一起,从而形成了一个长结构。此外,由于二维粗糙度产生的大的展向尺度,预计在粗糙壁上经常会发生流向尺度增长的展向合并。最后,就空间两点相关性而言,我们研究了结构的大宽度和小螺旋角对粗糙壁的影响。结果表明,这些因素可以在统计意义上增加结构的流向相干性。

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