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Effect of Reynolds Number on Wall-normal Turbulence Intensity in a Smooth and Rough Open Channel Using both Outer and Inner Scaling

机译:雷诺数对光滑粗糙明渠中壁面正常湍流强度的影响

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摘要

Sudden change of bed condition is frequent in open channel flow. Change of bed condition affects the turbulence characteristics in both streamwise and wall-normal direction. Understanding the turbulence intensity in open channel flow is of vital importance to the modeling of sediment transport and resuspension, bed formation, entrainment, and the exchange of energy and momentum. A comprehensive study was carried out to understand the extent of the effect of Reynolds number and bed roughness on different turbulence characteristics in an open channel flow. Four different bed conditions (impervious smooth bed, impervious continuous rough bed, pervious rough sand bed, and impervious distributed roughness) and two different Reynolds numbers were adopted for this cause. The effect of bed roughness on different turbulence characteristics is seen to be prevalent for most of the flow depth. Effect of Reynolds number on different turbulence characteristics is also evident for flow over different bed, but the extent varies on bed condition. Although the same sand grain is used to create the different rough bed conditions, the difference in turbulence characteristics is an indication that specific geometry of the roughness has an influence on turbulence characteristics. Roughness increases the contribution of the extreme turbulent events which produces very large instantaneous Reynolds shear stress and can potentially influence the sediment transport, resuspension of pollutant from bed and alter the nutrient composition, which eventually affect the sustainability of benthic organisms.
机译:明渠水流经常发生床层突然变化的情况。床层条件的变化会影响水流方向和壁法线方向的湍流特性。理解明渠流动中的湍流强度对于模拟泥沙输送和再悬浮,床层形成,夹带以及能量和动量交换至关重要。进行了全面的研究,以了解雷诺数和床粗糙度对明渠流中不同湍流特性的影响程度。为此,采用了四种不同的床层条件(不透水的光滑床,不透水的连续粗糙床,不透水的粗糙沙床和不透水的分布粗糙度)和两个不同的雷诺数。在大多数流动深度中,床层粗糙度对不同湍流特性的影响普遍存在。雷诺数对不同湍流特性的影响对于在不同床层上的流动也很明显,但是程度随床的条件而变化。尽管使用相同的沙粒来创建不同的粗糙床条件,但是湍流特性的差异表明,粗糙度的特定几何形状会影响湍流特性。粗糙度增加了极端湍流事件的贡献,这些极端湍流事件产生非常大的瞬时雷诺剪切应力,并可能潜在地影响沉积物的运输,污染物从床层的再悬浮并改变营养成分,最终影响底栖生物的可持续性。

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