Vortex-induced vibration analysis of long-span bridges with twin-box decks under non-uniformly distributed turbulent winds
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Vortex-induced vibration analysis of long-span bridges with twin-box decks under non-uniformly distributed turbulent winds

机译:在非均匀分布的湍流风中具有双箱甲板的长跨度桥梁的涡旋振动分析

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AbstractWith the increase of span length, long-span bridges become more flexible and susceptible to vortex-induced vibrations (VIV). Large-amplitude VIV may cause fatigue damage to structural components, and therefore accurate predictions of vortex-induced responses (VIR) are important. This paper proposes a mode-by-mode VIV analysis method for long-span bridges with twin-box decks under non-uniformly distributed turbulent winds. A semi-empirical model of vortex-induced forces (VIF), developed by the authors and validated by direct force measurements on an elastically-mounted twin-box section model under turbulent winds, is embedded in the VIV analysis method. The proposed analysis method is then used to analyze the VIV of a real long-span suspension bridge of a twin-box deck. The computed VIR of the prototype-bridge is finally compared with the VIR measured on-site by a structural heath monitoring system installed in the bridge. The comparative results show that the proposed VIV analysis method can be used to predict the VIR of long-span bridges with twin-box decks. Further studies also show that the non-uniform distribution of mean wind speed reduces the VIV of the bridge. Turbulence also diminishes the VIV of the bridge, and the reduction effect is larger on lower-order modes of vibration than on higher-order modes of vibration.Highlights
机译:<![CDATA [ 抽象 随着跨度长度的增加,长跨度桥梁变得更加灵活,易感涡旋引起的振动(VIV )。大幅度VIV可能对结构部件造成疲劳损伤,因此精确预测涡旋诱导的响应(VIR)是重要的。本文提出了一种逐模式VIV分析方法,用于使用非均匀分布湍流风的双箱甲板的长跨度桥梁。由作者开发的涡旋诱导力(VIF)的半经验模型,并通过直接力测量在湍流风中的可弹性上安装的双箱段模型进行验证,嵌入了VIV分析方法。然后使用所提出的分析方法来分析双箱甲板的真正长跨度悬架桥的VIV。最终将计算的Vir桥接电桥通过安装在桥中安装的结构良好的监控系统测量的VIR。比较结果表明,所提出的VIV分析方法可用于预测双箱甲板的长跨度桥梁的VIV。进一步的研究还表明,平均风速的不均匀分布减少了桥的VIV。湍流还减少了桥的VIV,并且在较低振动模式下,减少效果大于高阶振动模式。 亮点

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