首页> 外文期刊>International Journal of Heat and Fluid Flow >Large-scale spanwise periodicity in a turbulent boundary layer induced by highly ordered and directional surface roughness
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Large-scale spanwise periodicity in a turbulent boundary layer induced by highly ordered and directional surface roughness

机译:由高度有序和定向表面粗糙度引起的湍流边界层中的大规模展向周期性

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摘要

The effect of converging-diverging riblet-type surface roughness (riblets arranged in a 'herringbone' pattern) are investigated experimentally in a zero pressure gradient turbulent boundary layer. For this initial parametric investigation three different parameters of the surface roughness are analysed in detail; the converging-diverging riblet yaw angle a, the streamwise fetch or development length over the rough surface F_x and the viscous-scaled riblet height h-+. It is observed that this highly directional surface roughness pattern induces a large-scale spanwise periodicity onto the boundary layer, resulting in a pronounced spanwise modification of the boundary layer thickness. Hot-wire measurements reveal that above the diverging region, the local mean velocity increases while the turbulent intensity decreases, resulting in a thinner overall boundary layer thickness in these locations. The opposite situation occurs over the converging region, where the local mean velocity is decreased and the turbulent intensity increases, producing a locally thicker boundary layer. Increasing the converging-diverging angle or the viscous-scaled riblet height results in stronger spanwise perturbations. For the strongest convergent-divergent angle, the spanwise variation of the boundary layer thickness between the diverging and converging region is almost a factor of two. Such a large variation is remarkable considering that the riblet height is only 1% of the unperturbed boundary layer thickness. Increasing the fetch seems to cause the perturbations to grow further from the surface, while the overall strength of the induced high and low speed regions remain relatively unaltered. Further analysis of the pre-multiplied energy spectra suggests that the surface roughness has modified or redistributed the largest scale energetic structures.
机译:在零压力梯度湍流边界层中实验研究了收敛-发散的肋状表面粗糙度(肋状排列为“人字形”)的影响。为了进行初始的参数研究,详细分析了表面粗糙度的三个不同参数。收敛-发散的肋骨偏航角α,在粗糙表面F_x上沿流方向的获取或展开长度以及粘性缩放的肋骨高度h- +。观察到,这种高度定向的表面粗糙度图案在边界层上引起大规模的翼展方向周期性,从而导致边界层厚度的显着的翼展方向改变。热线测量显示,在发散区域上方,局部平均速度增加,而湍流强度减小,从而导致这些位置的总边界层厚度变薄。相反的情况发生在会聚区域,局部平均速度降低,湍流强度增加,产生局部较厚的边界层。增加会聚发散角或粘性缩放的肋条高度会导致更强的翼展方向扰动。对于最大的会聚-发散角,发散和会聚区域之间边界层厚度的翼展方向变化几乎是两倍。考虑到肋条高度仅为无扰动边界层厚度的1%,如此大的变化非常显着。提取量的增加似乎导致扰动从表面进一步增大,而感应的高速区域和低速区域的整体强度仍然相对不变。预乘能谱的进一步分析表明,表面粗糙度已改变或重新分布了最大尺度的高能结构。

著录项

  • 来源
    《International Journal of Heat and Fluid Flow》 |2013年第6期|90-102|共13页
  • 作者单位

    Walter Basset Aerodynamics Laboratory, Department of Mechanical Engineering, University of Melbourne, Victoria 3010, Australia;

    Walter Basset Aerodynamics Laboratory, Department of Mechanical Engineering, University of Melbourne, Victoria 3010, Australia;

    Walter Basset Aerodynamics Laboratory, Department of Mechanical Engineering, University of Melbourne, Victoria 3010, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Turbulent boundary layer; Surface roughness; Riblets;

    机译:湍流边界层;表面粗糙度;凹凸;

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