Flow Patterns Modeling over Spillway: Review Study

Humam Khalid Ibrahim, Ammar Hatem Kamel
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Abstract

A spillway dam, constructed concurrently with concrete or masonry, is a vital infrastructure designed to provide the controlled release of surplus water that surpasses the dam's storage capacity. Since the Ogee spillway is among the best and most well-known worldwide, it deserves study. Weir flow, inertia, and gravity are crucial in many open-channel applications. Consequently, hydraulic performance data between model and prototype structures are commonly scaled using Froude similitude. As the upstream head decreases in a weir flow, the surface tension and viscosity forces become more important, perhaps to the point where Froude scaling fails to achieve complete model-prototype similarity. Size-scale effects are responsible for various alterations to the head-discharge connection, the nappe trajectory, and air entrainment. Hydraulic parameters were explored in this work utilizing Flow3D software to find weir geometry optimization using the CFD method. In addition, this study attempted to evaluate flow on various parts of crested weirs in three different models.
溢洪道水流模式建模:回顾研究
与混凝土或砌石同时建造的溢流坝是一种重要的基础设施,其设计目的是有控制地释放超过大坝储水能力的多余水量。由于 Ogee 泄洪道是世界上最好和最著名的泄洪道之一,因此值得研究。在许多明渠应用中,堰流、惯性和重力都至关重要。因此,模型和原型结构之间的水力性能数据通常采用弗劳德模拟法进行缩放。随着堰流中上游水头的降低,表面张力和粘滞力变得更加重要,也许到了弗劳德缩放无法实现模型与原型完全相似的程度。尺寸尺度效应会导致水头-排量关系、堰坝轨迹和空气夹带的各种变化。本研究利用 Flow3D 软件对水力参数进行了探讨,以便利用 CFD 方法对堰的几何形状进行优化。此外,本研究还尝试在三种不同模型中评估波峰堰各部分的流量。
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