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Reynolds Stress Anisotropy in Open-Channel Flow

机译:明渠流中的雷诺应力各向异性

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摘要

This paper reports the results of an experimental study characterizing turbulence and turbulence anisotropy in smooth and rough shallow open-channel flows. The rough bed consists of a train of two-dimensional transverse square ribs with a ratio of the roughness height (k) to the total depth of flow (d) equal to 0.10. Three rib separations (p/k) of 4.5, 9, and 18 were examined. Here, p is the pitch between consecutive roughness elements and was varied to reproduce the classical condition of d- and k-type roughness. For each case, two-component velocity measurements were obtained using a laser Doppler velocimetry system at two locations for p/k =4.5 and 9: on the top of the rib and above the cavity, and an additional location for p/k= 18. The measurements allow examination of the local variations of the higher-order turbulent moments, stress ratios as well as turbulence anisotropy. Large variations of the turbulence intensities, Reynolds shear stress, turbulent kinetic energy and turbulence production are found for y_1 < 3k. In this region, the flow is more directly influenced by the shear layers from the preceding ribs. The higher-order moments appear to be similar for all rough surfaces beyond y_1 ≈ 7k. In the outer layer (y_1 > 3k), all higher-order turbulent moments for the k-type roughness show a substantial increase due to the complex interactions between the roughness and the remnants overlying shear layers shed from succeeding ribs. Analysis of the components of the Reynolds stress anisotropy tensor shows that at p/k= 18, the flow at y_1 < 5k tends to be more isotropic which implies that for this particular case, the effect of the roughness density could also be important. On the smooth bed, at the shallower depths, the correlation coefficient near the free surface increases and turbulence tends to become less anisotropic.
机译:本文报道了表征光滑和粗糙浅通道中湍流和湍流各向异性的实验研究结果。粗糙床由一列二维横向方肋组成,其粗糙度高度(k)与总流动深度(d)之比等于0.10。检查了三个肋间距(p / k)分别为4.5、9和18。在此,p是连续粗糙度元素之间的间距,并且为了再现d型和k型粗糙度的经典条件而进行了更改。对于每种情况,使用激光多普勒测速系统在两个位置分别获得p / k = 4.5和9的两分量速度测量值:在肋骨顶部和空腔上方,以及在p / k = 18的其他位置通过测量可以检查高阶湍流矩,应力比以及湍流各向异性的局部变化。对于y_1 <3k,发现湍流强度,雷诺剪切应力,湍动能和湍流产生的变化很大。在该区域中,流动受到来自先前肋骨的剪切层的直接影响。对于所有超出y_1≈7k的粗糙表面,高阶矩似乎相似。在外层(y_1> 3k)中,由于粗糙度和覆盖在后肋上的残余剪切层之间的复杂相互作用,导致k型粗糙度的所有高阶湍流矩都显着增加。雷诺应力各向异性张量分量的分析表明,在p / k = 18时,y_1 <5k处的流动趋于各向同性,这意味着对于这种特殊情况,粗糙度密度的影响也很重要。在光滑的床层上,在较浅的深度处,自由表面附近的相关系数增加,并且湍流趋向于变得各向异性较小。

著录项

  • 来源
    《Journal of Hydraulic Engineering》 |2009年第10期|812-824|共13页
  • 作者单位

    Dept. of Civil and Environmental Engineering, Univ. of Windsor, ON, Canada N9B 3P4;

    Dept. of Civil and Environmental Engineering, Univ. of Windsor, ON, Canada N9B 3P4;

    Dept. of Civil and Environmental Engineering, Univ. of Windsor, ON, Canada N9B 3P4;

  • 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

    open channel flow; turbulence; anisotropy;

    机译:明渠流量;湍流各向异性;

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