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水力发电学报 ›› 2024, Vol. 43 ›› Issue (12): 1-12.doi: 10.11660/slfdxb.20241201

• •    下一篇

编辑部推荐论文:高拱坝闸墩泄流振动传递路径的模型试验分析

  

  • 出版日期:2024-12-25 发布日期:2024-12-25

Model experiment analysis of discharge vibration transmission paths in high arch dam piers

  • Online:2024-12-25 Published:2024-12-25

摘要: 高拱坝闸墩在泄流过程中振动强烈易引发结构疲劳损伤甚至破坏,准确掌握其动态行为和振动机理是工程运行的安全保障。本文提出了一种基于模型试验的高拱坝闸墩泄流振动传递路径分析方法。根据水弹性模型振动试验理论,构建高拱坝闸墩水弹性模型,采集闸墩不同部位的振动加速度信息,进而采用传递熵方法分析闸墩振动传递路径,证明了传递熵能够准确捕捉复杂振动系统中的能量流动和传递方向,适用于闸墩振动传递路径分析。结果表明,闸墩侧墙内侧顶部、底部及支铰大梁是闸墩结构振动传递的三大起点,闸墩侧墙内侧中部及过流闸尾部是振动的主要汇集点。本研究为高拱坝闸墩的设计和维护提供了新的科学依据和技术手段。

关键词: 闸墩, 模型试验, 泄流振动, 传递熵, 传递路径

Abstract: High arch dam piers experience intense vibrations during flood discharge, which could lead to certain fatigue damage to the structure or even a failure. A thorough understanding of their dynamic behaviors and the mechanisms of discharge vibration is essential to ensuring safe dam operation. This paper presents a new method for analyzing the transmission path of discharge vibration in high arch dam piers based on model experiments. We construct a water elastic model for the pier of a high arch dam based on the theory of water elastic model vibration test, and collect vibration acceleration information from different parts of the pier. Then, the transfer entropy method is used to analyze the vibration transmission paths in the pier. We have proved the use of transfer entropy allows accurate capture of the energy flow and transmission direction in complex vibration systems, suitable for analysis of the vibration transmission paths in the pier. The results indicate that in a pier structure, vibration transmission starts from three major positions-the top, bottom, and hinged beams on the inner pier side wall; the middle part of this wall and the tail of the gate in the flow are two major zones for vibration to gather. This study would be useful theoretically and practically for the design and maintenance of high arch dam piers.

Key words: pier, model test, discharge vibration, transfer entropy, vibration transmission paths

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