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An Experimental Study of Vanes’ Effects onWater Depth Changes in Strongly Curved Open-Channels

机译:叶片对强弯明渠水深变化影响的实验研究

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Evaluation of flow conditions in strongly curved open-channels is of vital importance in studying a variety of water engineering problems such as sedimentation, erosion, and contaminant transport. This work presents the impact of middle vanes on the water depth changes (super-elevation) in sharp bends. The behavior of these vanes while extending the up- and downstream channels is also investigated. Various experiments are conducted to verify the laboratory model, guarantee homogeneity of the data, and minimize the systematic errors. Accordingly, the water depth values are measured for three , , and bends with various inlet discharges for gauging sections throughout and after the bend. It is found that, unlike mild bends, super-elevation in sharp bends is nonlinear. Moreover, the vanes shift the location of the maximum and minimum depths from the bisector toward the end of the bends. Vanes are able to decrease the super-elevation while their efficiency can be improved up to 90% by extending them into the up- and downstream channels. A new equation is also proposed to determine the maximum water depth gradients.
机译:在研究各种水工程问题(例如沉降,侵蚀和污染物迁移)时,评估强弯明渠的流动条件至关重要。这项工作提出了中间叶片对急弯中水深变化(超高)的影响。还研究了这些叶片在扩展上下游通道时的行为。进行了各种实验以验证实验室模型,保证数据的均匀性并最大程度地减少系统误差。因此,针对三个弯头和弯头测量水深值,并在弯折前后以及整个弯折期间使用各种进水口进行测量。已发现,与轻度弯曲不同,尖锐弯曲中的超高是非线性的。而且,叶片使最大和最小深度的位置从等分线向弯头末端移动。通过将叶片扩展到上下游通道,叶片可以降低超高,同时效率可以提高到90%。还提出了一个新的方程式来确定最大水深梯度。

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