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单侧渐扩消力池体型优化与水力特性分析

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东涌水库溢洪道采用泄槽台阶消能+下游消力池底流消能的工程方案,但受限于地形地质条件,消力池宽度较窄,与河道呈145°夹角,且下游现状交通桥阻碍行洪,不利因素较多。原方案泄流进入消力池后,池内水面波动大,出池水流大幅加速,河道内主流集中,交通桥上游左侧形成大范围回流区。通过水工模型试验,对消力池布置方案进行优化。结果表明:通过加深消力池、池内前段设T型墩、左偏消力池左侧边墙、降低尾坎起反坡至河道等措施,水流流态明显改善。泄流入池后水面波动幅度减小,出池水流不再加速,河道内水流分散、流速减缓。研究成果可为类似工程提供借鉴。
Shape Optimization and Hydraulic Characteristics Analysis of Unilateral Divergent Stilling Basin
The spillway of Dongchong Reservoir adopts an engineering scheme of spillway step energy dissipation and downstream stilling basin underflow.However,due to the limitations of terrain and geological conditions,the width of the stilling basin is small,and the angle between it and the river is 145°;meanwhile,the current downstream traffic bridge hinders flood discharge,resulting in many unfavorable factors.For the original scheme,the discharge entering the stilling basin makes the water surface fluctuate greatly,and the water flow out of the basin accelerates significantly.The main flow in the river is concentrated,and a large-scale backflow area is formed on the left of the upstream traffic bridge.This paper optimizes the layout scheme of the stilling basin through hydraulic model tests.The results show that through measures such as deepening the stilling basin,installing T-shaped piers in the front section of the basin,shifting the left side wall of the stilling basin to the left,and lowering the tail-weir and creating a reverse slope towards the river,etc.,the water flow pattern is significantly improved.After the discharge enters the basin,the fluctuation amplitude of the water surface decreases,and the water flow out of the basin no longer accelerates.The water flow in the river is dispersed and the flow velocity falls.The research results can provide a reference for similar projects.

spillwayunilateral divergent stilling basinT-shaped pierhydraulic modelflow pattern optimization

石林平、廖智颖、谢志高、周训成、涂向阳

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深圳市东部水源管理中心,广东 深圳 518121

珠江水利委员会珠江水利科学研究院,广东 广州 510611

水利部珠江河口海岸工程技术研究中心,广东 广州 510611

深圳市水务规划设计院股份有限公司,广东 深圳 518036

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溢洪道 单侧渐扩消力池 T型墩 水工模型 流态优化

2025

人民珠江
水利部珠江水利委员会

人民珠江

影响因子:0.406
ISSN:1001-9235
年,卷(期):2025.46(1)