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Revisiting the Energy-Momentum Method for Rating Vertical Sluice Gates under Submerged Flow Conditions

机译:再谈能量动量法在淹没流动条件下对垂直闸门的等级评定

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摘要

Submerged sluice gates may be used as discharge measuring structures in irrigation channels. One commonly used model to predict discharge under submerged gates is based on the simultaneous solution of the energy and momentum equations (EM method). The conventional assumption for the solution is that the roller forming downstream of the gate is a static bubble of water with zero net flux of both momentum and kinetic energy. Energy losses along the submerged gate flow are commonly neglected. In this study, rational analysis of the EM method shows that the roller momentum flux and the energy loss may be considerable. A novel formulation of the EM method accounting for these two phenomena is proposed. Although it yields results similar to those of the conventional method, the new method introduces rationality in the application of the EM equations for submerged gate flow and helped to critically revise the assumptions in which the conventional EM method is based.
机译:淹没式闸门可用作灌溉渠中的流量测量结构。一种常用的预测淹没式闸门下的流量的模型是基于能量和动量方程式的同时解(EM方法)。解决方案的常规假设是,在闸门下游形成的滚轮是水的静态气泡,动量和动能的净流量均为零。沿淹没闸流的能量损失通常被忽略。在这项研究中,对EM方法的合理分析表明,辊子动量通量和能量损失可能相当大。提出了解决这两种现象的EM方法的新公式。尽管它产生的结果与常规方法相似,但新方法在将EM方程用于淹没闸流的应用中引入了合理性,并有助于严格修改常规EM方法所基于的假设。

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