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Novel Diversion Structure for Supercritical Flow

机译:新型超临界流转向结构

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In urban drainage systems, it is usually necessary to split the storm water discharge among different sewer branches because of limited flow capacity of either hydraulic structures or sewer lines. For this purpose, sewer sideweirs and leaping weirs are generally used as diversion overflow structures. For supercritical approach flow, the former is not recommended because of the occurrence of hydraulic jumps, whereas the latter requires an outlet located below the approach flow sewer bottom. To overcome these constraints, a novel compact hydraulic structure is proposed. It consists of a frontal rectangular intake, representing the diversion sewer inlet, located in the approach flow sewer and parallel to its bottom. A 6.67:1 scale model was tested over a range of hydraulic and geometrical parameters to determine its head-discharge relationship, developing a dimensionless equation relating the diversion discharge to the geometrical properties of the intake under supercritical flow conditions. The limited hydraulic structure size provides cost-effectiveness and ease of installation and maintenance.
机译:在城市排水系统中,由于水工建筑物或下水道的流量有限,通常需要将雨水排放分配到不同的下水道分支之间。为此,下水道围堰和越过堰堰通常用作引水溢流结构。对于超临界进水,不建议使用前者,因为会发生水力跃迁,而后者则需要位于进水下水道底部下方的出口。为了克服这些限制,提出了一种新颖的紧凑型液压结构。它由一个前部矩形进气口组成,该进气口代表引水排污口,位于进水流排污口中,并平行于其底部。在一系列液压和几何参数上测试了一个6.67:1比例模型,以确定其水头排放关系,建立了无量纲方程,将分流排放与进气在超临界流动条件下的几何特性相关联。有限的液压结构尺寸提供了成本效益,并且易于安装和维护。

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