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Vortex-Induced Vibration Suppression of Bridges by Inerter-Based Dynamic Vibration Absorbers

机译:涡流诱导的桥梁通过导流动态振动吸收器桥接

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The vortex-induced vibration may cause fatigue of a bridge structure, affecting the safety of vehicles and the comfort of pedestrians. Inerter is a two-terminal device, which has been applied in many areas. This paper studies the problem of suppressing the vortex-induced vibration of a bridge by using an inerter-based dynamic vibration absorber (IDVA). The performances in terms of the suspension travel and the vertical displacement of the bridge with different IDVAs in suppressing vortex-induced vibration are compared, and the effect of the installation position of IDVA on the performance of suppressing vortex-induced vibration is shown. The performance indexes for the vertical displacement of six IDVA arrangements are obtained by using an iterative method, where the performance indexes for the vertical displacement are minimized by using the optimization toolbox in a commercial software. The result shows that the optimal installation positions and the number of suitable installation positions are affected by the resonant mode. Among the six arrangements, one arrangement is identified to have the best performance of suppressing vortex-induced vibration. All the six arrangements have reduced the suspension travel performance.
机译:涡旋诱导的振动可能导致桥梁结构的疲劳,影响车辆的安全性以及行人的舒适性。活动是一种双终端设备,它已应用于许多领域。本文通过使用基于活的动态振动吸收器(IDVA)来研究抑制涡轮涡轮振动的问题。比较了悬挂行程方面的性能和在抑制涡旋诱导的振动中具有不同IDVA的桥梁的垂直位移,并且示出了IDVA安装位置对抑制涡旋诱导的振动性能的影响。通过使用迭代方法获得六个IDVA布置的垂直位移的性能指标,其中通过在商业软件中使用优化工具箱,最小化垂直位移的性能指标。结果表明,最佳安装位置和合适的安装位置的数量受到谐振模式的影响。在六种布置中,鉴定了一种布置,以具有抑制涡旋诱导的振动的最佳性能。所有六个安排都减少了悬架旅行表现。

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