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Experimental and Numerical Analysis of Side Weir Flows in a Converging Channel

机译:汇流通道侧堰流动的实验与数值分析

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This paper investigates the lateral outflow over a short-crested side weir inserted in a converging rectangular channel with linearly decreasing width in the flow direction. This type of overflow device induces a spatially varied free-surface flow with decreasing discharge and, because of the convergent geometry, it can potentially improve the performance of the distribution channels commonly used in irrigation systems, sewer networks, wastewater plants, and hydropower facilities for flow diversion and control and for flood protection. A laboratory investigation is carried out to analyze the main hydraulic characteristics of this kind of flow and assess the improvement in outflow efficiency compared to the conventional rectangular side weir in a prismatic channel. Only subcritical steady flow conditions are considered. Experimental data show that the Froude number in the main channel downstream of the weir and the dimensionless weir height are significant variables to describe the outflow efficiency, and they confirm that the nonprismaticity of the main channel induces a noticeable increase in outflow performance. Furthermore, the experimental results show that the assumption of constant specific energy usually adopted in one-dimensional side weir flow modeling is reasonably valid, despite the considerable increase in the velocity-head and momentum correction coefficients along the side weir. Finally, the comparison between experimental data and numerical results shows that the classic one-dimensional modeling approach can adequately predict the main engineering aspects of side weir flows in nonprismatic channels. (C) 2017 American Society of Civil Engineers.
机译:本文研究了一个短顶侧堰的横向流出,该堰位于一个会聚的矩形通道中,在流动方向上宽度呈线性减小。这种类型的溢流装置会在空间上产生变化的自由表面流,并减少排放,并且由于其会聚的几何形状,它可以潜在地改善通常用于灌溉系统,下水道网络,废水处理厂和水力发电设施的分配通道的性能。分流和控制以及防洪。进行了实验室研究,以分析此类流的主要水力特性,并评估与棱柱形通道中常规矩形侧堰相比,流出效率的提高。仅考虑亚临界稳态流量条件。实验数据表明,堰下游主通道中的弗洛德数和无因次堰高是描述流出效率的重要变量,它们证实了主通道的非棱柱性会引起流出性能的显着提高。此外,实验结果表明,尽管沿侧堰的速度扬程和动量校正系数显着增加,但一维侧堰流模型中通常采用的恒定比能的假设是合理有效的。最后,将实验数据与数值结果进行比较,结果表明,经典的一维建模方法可以充分预测非棱镜通道中侧堰的主要工程方面。 (C)2017年美国土木工程师学会。

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