首页> 外文会议>International Conference on Hydraulics of Dams and River Structures; 20040426-28; Tehran(IR) >Application of a Boussinesq-type equation to flow over trapezoidal profile weirs
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Application of a Boussinesq-type equation to flow over trapezoidal profile weirs

机译:Boussinesq型方程在梯形剖面堰上流动的应用

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摘要

Flow over embankment shaped weirs commonly encountered in large 2-D flow problems cannot be simulated by most of the common flow models which assume uniform velocity and hydrostatic pressure distributions. A Boussinesq-type momentum equation, which allows for curvature of the free surface and a non-hydrostatic pressure distribution, is considered in this paper for the numerical simulation of steady flow over short- and broad-crested trapezoidal profile weirs as well as for the establishment of head-discharge relationships under free flow conditions. An implicit finite difference scheme is applied. Computed and measured results of flow surface profiles and rating curves for these types of weirs are presented. The numerical results of the flow surface profiles and rating curves show good agreement with the corresponding experimental data. The model results also demonstrate the detailed dependence of the flow characteristics of these weirs on the curvature of the streamlines.
机译:在大型二维流动问题中通常遇到的堤坝状堰上的流动不能通过大多数假定均一速度和静水压力分布的常见流动模型来模拟。本文考虑了考虑自由表面曲率和非静水压力分布的Boussinesq型动量方程,用于短和宽顶梯形轮廓堰上的稳定流动的数值模拟。在自由流动条件下建立水头-排水关系。应用隐式有限差分方案。给出了这些类型堰的流动表面轮廓和额定曲线的计算和测量结果。流动表面轮廓和额定曲线的数值结果与相应的实验数据吻合良好。模型结果还证明了这些堰的流动特性对流线曲率的详细依赖性。

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