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Wind-rain-induced vibration and control of stay cables in a cable-stayed bridge

机译:风雨引起的振动和斜拉桥中斜拉索的控制

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This paper presents an analytical model for investigating wind-rain-induced vibration and control of stay cables in a cable-stayed bridge. The single-degree-of-freedom (SDOF) wind—rain excitation model developed from a sectional cable model is applied to a taut stay cable, taking into consideration the variation of mean wind speed along the stay cable and the effect of mode shapes of cable vibration. The computed results from the analytical model are then compared with the available field measurement results. After comparison, the parameter studies are performed to explore the mechanism of wind-rain-induced vibration of stay cables. The analytical model developed in this study can also consider cable vibration control, in which a linear viscous damper is attached to the stay cable near its anchorage. Clamped and undamped mode shapes of the stay cable and the Runge-Kutta-Fehlberg method are used to find the numerical solutions. The numerical results show that there is an optimum damping coefficient of the viscous damper to achieve the best mitigation of wind-rain-induced cable vibration. This optimum damping coefficient is almost the same as that obtained from the complex eigenvalue analysis of the stay cable with a viscous damper.
机译:本文提出了一种分析模型,用于研究斜拉桥中风雨引起的振动和斜拉索的控制。考虑到沿拉索的平均风速变化以及振型的影响,将由截面电缆模型开发的单自由度(SDOF)风雨激振模型应用于拉紧拉索。电缆振动。然后将分析模型的计算结果与可用的现场测量结果进行比较。比较之后,进行参数研究以探索风雨引起的斜拉索振动的机理。在本研究中开发的分析模型还可以考虑电缆振动控制,其中线性粘性阻尼器在锚固电缆附近锚固至锚索。斜拉索的夹紧和非阻尼模态形状以及Runge-Kutta-Fehlberg方法用于找到数值解。数值结果表明,为使​​风雨引起的电缆振动得到最佳缓解,粘性阻尼器具有最佳的阻尼系数。该最佳阻尼系数几乎与通过带粘性阻尼器的斜拉索的本征值分析所获得的最佳阻尼系数几乎相同。

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