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Experimental Investigation of Three-Dimensional Flow Structure and Turbulent Flow Mechanisms Around a Nonsubmerged Spur Dike With a Low Length-to-Depth Ratio

机译:低长深比的非淹没丁坝周围三维流动结构和湍流机理的实验研究

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摘要

Flume experiments were conducted to investigate the three-dimensional flow structure and turbulent flow mechanisms around a nonsubmerged, sidewall-attached rectangular spur dike with a low length-to-depth ratio. Velocity measurements show that the wake of the spur dike in the middepth region consists of a single, large recirculation zone, while that in the near-bed region is composed of a horizontal recirculation zone and a corner vortex with its axis perpendicular to the flume sidewalls. A horseshoe vortex system observed in front of the spur dike is found to interact with the downstream recirculation zone, which results in the increase in lateral turbulent mixing especially in near-bed regions. Another vortex, which rotates in the opposite direction to the horseshoe vortex, is found beneath the free surface in front of the spur dike, which is associated with increased free surface elevation and its fluctuation. Power spectra of the transverse velocity show evidence of a periodic behavior of the near-wake shear layer emanating from the tip of the spur dike with a Strouhal number of about 2. It is also shown that the two experiments conducted at different Reynolds and Froude numbers show very similar flow fields in spite of large differences in free surface elevations, which indicates that the effects of free surface deformation on mean velocities and Reynolds stresses are marginal.
机译:进行了水槽实验,以研究长深比低的非浸没式,侧壁附着的矩形丁坝周围的三维流动结构和湍流机理。速度测量表明,丁坝在中深度区域的尾流由一个大的再循环区域组成,而在近床区域的丁坝则由一个水平的再循环区域和一个角涡旋组成,其轴心垂直于水槽侧壁。 。发现在丁坝前面观察到的马蹄涡流系统与下游的再循环区相互作用,这导致横向湍流混合的增加,尤其是在近床区。在丁坝前面的自由表面下方发现了另一个旋涡,该旋涡与马蹄旋涡的旋转方向相反,这与自由表面标高及其波动有关。横向速度的功率谱显示出从丁坝尖端发出的斯托克哈尔数约为2的近尾剪切层的周期性行为的证据。它还表明,两个实验在不同的雷诺数和弗洛德数下进行尽管自由表面标高存在很大差异,但仍显示出非常相似的流场,这表明自由表面变形对平均速度和雷诺应力的影响很小。

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  • 来源
    《Water resources research》 |2018年第5期|3530-3556|共27页
  • 作者单位

    Hanyang Univ, Dept Civil & Environm Engn, Seoul, South Korea;

    Hanyang Univ, Dept Civil & Environm Engn, Seoul, South Korea;

    Hanyang Univ, Dept Civil & Environm Engn, Seoul, South Korea;

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