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首页> 外文期刊>Earthquake Engineering and Engineering Vibration >Dynamic performance of cable-stayed bridge tower with multi-stage pendulum mass damper under wind excitations — I: Theory
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Dynamic performance of cable-stayed bridge tower with multi-stage pendulum mass damper under wind excitations — I: Theory

机译:风振作用下带有多级摆质量阻尼器的斜拉桥塔的动力性能— I:理论

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摘要

In this paper, wind-induced vibration control of a single column tower of a cable-stayed bridge with a multi-stage pendulum mass damper (MSPMD) is investigated. Special attention is given to overcoming space limitations for installing the control device in the tower and the effect of varying natural frequency of the towers during construction. First, the finite element model of the bridge during its construction and the basic equation of motion of the MSPMD are introduced. The equation of motion of the bridge with the MSPMD under along-wind excitation is then established. Finally, a numerical simulation and parametric study are conducted to assess the effectiveness of the control system for reducing the wind-induced vibration of the bridge towers during construction. The numerical simulation results show that the MSPMD is practical and effective for reducing the along-wind response of the single column tower, can be installed in a small area of the tower, and complies with the time-variant characteristics of the bridge during its entire construction stage.
机译:本文研究了具有多级摆质量阻尼器(MSPMD)的斜拉桥单塔风致振动控制。要特别注意克服将控制设备安装在塔中的空间限制以及在施工过程中塔固有频率变化的影响。首先,介绍了桥梁建造过程中的有限元模型和MSPMD的基本运动方程。然后建立了顺风激励下具有MSPMD的桥梁的运动方程。最后,进行了数值模拟和参数研究,以评估控制系统降低桥梁施工过程中风引起的振动的有效性。数值模拟结果表明,MSPMD可以有效降低单塔塔顺风响应,可以安装在塔的较小区域内,并且在整个桥段内都符合桥的时变特性。施工阶段。

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