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水力发电学报 ›› 2020, Vol. 39 ›› Issue (1): 110-120.doi: 10.11660/slfdxb.20200112

• • 上一篇    

乌东德水电站泄洪减振水弹性模型试验研究

  

  • 出版日期:2020-01-25 发布日期:2020-01-25

Experimental study on hydro-elastic model of flood discharge and vibration reduction of Wudongde hydropower station

  • Online:2020-01-25 Published:2020-01-25

摘要: 本文基于水工模型试验,利用乌东德水弹性模型,研究了不同表孔开度对下游边坡和底部基岩振动的影响,同时利用BP神经网络建立了两种振动预测模型,将泄洪流量分为三个流量级,提出各流量级下的泄洪减振优化方案。结果表明:(1)表孔单独泄流时,当开度增大,基岩的振动基本上呈增大趋势,但当表孔全开时,基岩的振动反而呈减小趋势,边坡的振动则总是跟开度正相关。对于表孔中孔联合泄洪,底部基岩的振动往往在4 m开度时最小,但边坡的振动情况比较复杂。(2)两种振动预测模型都有良好的精度,并且单独建立表孔中孔联合泄洪工况的预测模型可以提高精度。(3)流量很小时,单独采用多个表孔小开度泄洪;流量一般时,充分利用中孔泄洪,开启较少表孔且采用4 m开度;流量较大时,中孔全开,表孔采用多孔小开度泄洪。

关键词: 水工模型试验, 乌东德水弹性模型, 预测模型, BP神经网络, 泄洪减振

Abstract: Using experimental tests on the Wudongde hydro-elastic model, this paper studies the effects of different operation modes and gate openings of its flood outlets on the vibrations of the downstream slope and bedrock, and develops two numerical models for vibration prediction using the BP neural network. Flood flows are divided into three levels of discharge, and optimized schemes for flood control and vibration reduction at each level are obtained. The results show that (1) in the mode of only one surface outlet opened, bedrock vibration is intensified substantially with the increasing gate opening; while in the mode of all surface outlets fully opened, bedrock vibration is reduced and slope vibration is always positively correlated with gate opening. In the joint operation of the surface outlets and deep outlets, bedrock vibration is the weakest at a surface outlet opening of 4 m, but slope vibration is more complicated. (2) The two numerical models are good in prediction accuracy, and constructing a specific prediction model for the joint mode can improve accuracy. (3) To release flood at very small flow rates, multiple surface outlets can be used with a small gate opening; at normal flow rates, the middle outlets should be put into full use, combining, if necessary, with a few surface outlets opened at 4 m opening; at large flow rates, the middle outlets must be fully opened and multiple surface outlets working at small openings.

Key words: hydraulic model test, Wudongde hydro-elastic model, prediction model, BP neural network, flood discharge and vibration reduction

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