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An Analytical Analysis of Hydraulic Jump in Triangular Channel: A Proposed Model

机译:三角通道水力跃迁的分析模型

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The paper presents the theoretical study of hydraulic jump in triangular channel section. Presuming the jump as one dimensional free shear layer with hydrostatic pressure distribution across it and using momentum equation, specific force equation is obtained. Using the specific force equation and eddy viscosity equation, analytical models for sequent depth, dimensionless profile, turbulent shear stress distribution and energy loss for various initial Froude numbers have been obtained. The proposed models for sequent depth and energy loss are also compared with the other developed models. The proposed energy loss model also provides the energy loss at any point along the jump, while this provision is not available in the models of other investigators. Newton-Raphson and Runge-Kutta methods are used for the solution of the proposed model. The outcome of this study can be used in the design of stilling basin floor and side walls on permeable foundations.
机译:本文介绍了三角通道断面水力跃迁的理论研究。假设跳跃为一维自由剪切层,其上具有静水压力分布,并使用动量方程式,则获得了比力方程。使用比力方程和涡流粘度方程,获得了针对各种初始弗洛德数的后续深度,无因次分布,湍流切应力分布和能量损失的分析模型。提议的后续深度和能量损失模型也与其他已开发模型进行了比较。拟议的能量损失模型还提供了跳跃过程中任何点的能量损失,而其他研究者的模型中没有此规定。 Newton-Raphson和Runge-Kutta方法用于该模型的求解。这项研究的结果可用于设计可渗透地基上的静水盆底板和侧壁。

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