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Stage–discharge relationship for a pipe overflow structure in both free and submerged flow

机译:自由和淹没流中管道溢流结构的阶段-排放关系

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Many facilities for urban drainage systems are equipped with a pipe overflow structure that can often be treated as a circular broad-crested weir. Thus it is possible to evaluate the overflow discharge through this device by measuring the water levels in the upstream tank and at the outlet of the pipe. In the present study, computational fluid dynamics (CFD) is used to determine a relationship between the discharge and the water levels upstream and downstream of the orifice for a range of diameters between 200 and 600?mm and a relative head up to 2. Over 50 numerical simulations are performed to take into account all the operating conditions of the system: free flow, submerged flow and pressurized flow. A regression is applied to the resulting data in order to obtain an orifice equation valid in both free-flow and submerged-flow regimes. Specific formulas, derived from Bernoulli's theorem, are also given for pressurized flows. The proposed methodology is applied to two examples.
机译:城市排水系统的许多设施都配备了管道溢流结构,通常可以将其视为圆形的宽顶堰。因此,可以通过测量上游水箱和管道出口处的水位来评估通过该设备的溢流排放。在本研究中,计算流体动力学(CFD)用于确定直径在200至600?mm之间以及相对扬程最大为2的孔口上游和下游的出水量与水位之间的关系。进行了50次数值模拟,以考虑系统的所有运行条件:自由流动,浸没流动和加压流动。对所得数据进行回归,以获得在自由流动和淹没流动两种情况下均有效的孔口方程。还给出了从伯努利定理推导的特定公式。所提出的方法应用于两个示例。

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