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Hydraulic and turbulence structure of triangular labyrinth weir-pool fishways

机译:三角迷宫堰池鱼道水力与湍流结构

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Detailed laboratory experiments were conducted to analyze and evaluate a new weir-pool fishway design. The new design consisted of a series of one-cycle, triangular labyrinth weirs that formed a weir-pool fish passage. Hydraulic characteristics of flow over the proposed fishway were examined for three pool lengths and a wide range of discharges. It was found that the new design had superior discharge capacity over classical weir-pool fishways in plunging flow regime. Spatial and point analyses of measured velocity data were carried out to understand turbulence structure and distribution of turbulent flow. The power dissipation per unit volume was calculated for different tests, and it varied nonlinearly with discharge. Based on the limiting criteria for energy dissipation rates of different fish species, the maximum operating discharge for different slopes was extracted for the proposed design. The model-to-prototype scaling analysis was performed based on the recommended scaling factor of three for prototype. It was found that the approach velocity of prototype increased by 12%, whereas the total discharge increased by more than five times. The contour plots of time-averaged velocity indicated that the proposed fishways offered diversified flow fields without exceeding the maximum velocity above the standards recommended for weir-pool fishways. To study the size, direction, and periodicity of turbulent eddies, magnitude of the most energetic eddy and dominant frequencies were extracted using power spectrum analysis. Quadrant analysis consistently showed that Reynolds shear stresses in ejection and sweep events became weaker as the pool length increased. The small region of strong ejection and sweep events evidenced a good resting place for fish migration, whereas the generated turbulence was large enough to attract fish species to use the passage.
机译:进行了详细的实验室实验,以分析和评估新的堰池鱼道设计。新设计包括一系列单周期三角形迷宫堰,形成堰池鱼道。拟议鱼道上水流的水力特性已针对三种池长和各种排放进行了检查。结果发现,在水流骤降的情况下,新设计的排水能力要优于传统的堰池鱼道。对测得的速度数据进行空间和点分析,以了解湍流的结构和湍流的分布。计算了不同测试的每单位体积的功耗,它随放电呈非线性变化。根据不同鱼类能量耗散率的限制标准,为拟议设计提取了不同坡度的最大工作流量。基于原型的推荐比例因子为3进行了模型到原型的比例分析。发现原型的接近速度增加了12%,而总排放量增加了五倍以上。时间平均速度的等高线图表明,拟议的鱼道提供了多样化的流场,而没有超过堰堰鱼道建议标准的最大速度。为了研究湍流涡流的大小,方向和周期性,使用功率谱分析提取了最活跃的涡流和主导频率的大小。象限分析始终显示,随着池长的增加,弹射和扫掠事件中的雷诺剪切应力变弱。强烈的弹出和横扫事件的小区域证明是鱼类迁移的好地方,而所产生的湍流大到足以吸引鱼类使用该通道。

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