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Analysis for the Vibration Mechanism of the Spillway Guide Wall Considering the Associated-Forced Coupled Vibration

机译:考虑到相关强制耦合振动的溢洪道引导墙振动机理分析

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During the flood discharge in large-scale hydraulic engineering projects, intense flow-induced vibrations may occur in hydraulic gates, gate piers, spillway guide walls, etc. Furthermore, the vibration mechanism is complicated. For the spillway guide wall, existing studies on the vibration mechanism usually focus on the vibrations caused by flow excitations, without considering the influence of dam vibration. According to prototype tests, the vibrations of the spillway guide wall and the dam show synchronization. Thus, this paper presents a new vibration mechanism of associated-forced coupled vibration (AFCV) for the spillway guide wall to investigate the dynamic responses and reveal coupled vibrational properties and vibrational correlations. Different from conventional flow-induced vibration theory, this paper considers the spillway guide wall as a lightweight accessory structure connected to a large-scale primary structure. A corresponding simplified theoretical model for the AFCV system is established, with theoretical derivations given. Then, several vibrational signals measured in different structures in prototype tests are handled by the cross-wavelet transform (XWS) to reveal the vibrational correlation between the spillway guide wall and the dam. Afterwards, mutual analyses of numeral simulation, theoretical derivation, and prototype data are employed to clarify the vibration mechanism of a spillway guide wall. The proposed mechanism can give more reasonable and accurate results regarding the dynamic response and amplitude coefficient of the guide wall. Moreover, by changing the parameters in the theoretical model through practical measures, the proposed vibration mechanism can provide benefits to vibration control and structural design.
机译:在大规模液压工程项目中的洪水放电期间,液压栅极,栅极墩,溢洪道引导壁等可能发生强烈的流动引起的振动。此外,振动机构复杂。对于溢洪道导向墙,对振动机制的现有研究通常专注于流动激发引起的振动,而不考虑坝振动的影响。根据原型测试,溢洪道导向墙和坝体显示同步的振动。因此,本文介绍了用于溢洪道引导壁的相关强制耦合振动(AFCV)的新振动机构,以研究动态响应并揭示耦合振动性能和振动相关性。与传统的流动诱导的振动理论不同,本文认为溢洪道导向墙作为连接到大型初级结构的轻量级附件结构。建立了对AFCV系统的相应简化理论模型,具有给出的理论推导。然后,在原型测试中以不同结构测量的若干振动信号由交叉小波变换(XW)处理,以揭示溢洪道引导墙和坝之间的振动相关性。然后,采用标号模拟,理论推导和原型数据的相互分析来阐明溢洪道引导壁的振动机构。所提出的机制可以给出导向墙的动态响应和幅度系数的更合理和准确的结果。此外,通过通过实际措施改变理论模型中的参数,所提出的振动机构可以为振动控制和结构设计提供益处。

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