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水力发电学报 ›› 2017, Vol. 36 ›› Issue (7): 65-73.doi: 10.11660/slfdxb.201170707

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小底坡泄洪洞突扩突跌掺气坎水力特性

  

  • 出版日期:2017-07-25 发布日期:2017-07-25

Hydraulic characteristics of sudden lateral enlargement and bottom drop aerators in spillway tunnels with mild slope

  • Online:2017-07-25 Published:2017-07-25

摘要: 小底坡条件下,在高水头有压弧形门后采用突扩突跌体型兼作掺气措施使用时,掺气空腔容易积水,而且主流水舌受侧墙挤压后越出水面,形成较高折冲水翅现象。采用流动特征分析与模型试验相结合的方法,认为空腔积水及折冲水翅的主要原因是两个“积水源”和一个“退水机制”,强调了使射流冲击角最小化对空腔稳定及消除水翅问题起关键作用。在试验结构优化及对比分析的基础上,给出一种局部变坡消退空腔积水及改善折冲水翅的方法,同时探讨了底空腔及侧空腔的相互关系以及掺气效果的影响因素。结合具体工程,验证了优化体型沿程掺气浓度及对运行水头的适应能力。

Abstract: When an aerator, with a sudden lateral enlargement and a bottom drop, is operated behind a high-head radial gate in a spillway tunnel with mild bottom slope, its air cavity behind the bottom drop is often partially filled with a certain volume of backwater and water wings protruding above the water surface are generated under sidewall deflection. Based on theoretical analysis and physical model tests, this study demonstrated the main reasons for the air cavity backwater and water wings as two backflow sources and one water withdrawal mechanism, and emphasized the importance of a measure to minimize the angle of water nappe impinging on bottom slab at the reattachment of lower nappe surface. By optimization of aerators and comparative analysis, a new shape of the bottom slab with varying local slope is recommended to reduce the backwater and suppress the water wings. The optimized aerator design suggested by this study, its air concentration along the tunnel, and its effective operation under the range of operating water head were verified in-situ in an engineering project. In addition, relationship between the bottom and side cavities and their influence are also discussed in this paper.

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