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首页> 外文期刊>Transaction of the Hongkong Institute of Engineers >Vibration Control of a Long Span Cable-stayed Bridge Tower Using Pendulum Mass Damper
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Vibration Control of a Long Span Cable-stayed Bridge Tower Using Pendulum Mass Damper

机译:摆质量阻尼器对大跨度斜拉桥塔架的振动控制

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摘要

The configuration of long span cable-stayed bridge varies at different construction stages and so does its natural frequencies. The vibration control performance of a multi-stage pendulum mass damper (MPMD), whose natural frequency can be altered by controlling the pendulum wire length, was studied for mitigation of the wind-induced vibration of a long span cable-stayed bridge tower during construction. A theoretical framework for predicting the buffeting response of the coupled MPMD-bridge system was first developed. Four different construction stages of the bridge were selected for study. The effectiveness of MPMD was further examined by an experimental investigation. A 1:100 scale model of the bridge tower together with a two-stage pendulum mass damper were designed and manufactured. Two kinds of excitations, harmonic and white noise excitation, were applied respectively in the lateral direction of the bridge tower (i.e. in the direction normal to the bridge longitudinal axis), which was considered as the most critical loading direction. The effect of various parameters, including damping ratio, mass ratio, and frequency tuning ratio of the damper, was considered in this study. Both the theoretical and experimental investigations showed that the MPMD can significantly reduce the displacement responses of the bridge tower for the concerned construction stages and the total damping of the tower was enhanced significantly by the MPMD.
机译:大跨度斜拉桥的结构在不同的施工阶段会有所不同,其固有频率也会有所不同。为了减轻大跨度斜拉桥塔架施工过程中风引起的振动,研究了多级摆质量阻尼器(MPMD)的振动控制性能,该阻尼器的固有频率可以通过控制摆线长度来改变。 。首先建立了用于预测耦合MPMD桥系统的抖振响应的理论框架。选择了桥梁的四个不同施工阶段进行研究。通过实验研究进一步检验了MPMD的有效性。设计并制造了比例为1:100的桥塔模型以及两级摆质量阻尼器。分别在桥塔的横向(即垂直于桥纵轴的方向)施加了两种激励,即谐波激励和白噪声激励,这被认为是最关键的荷载方向。在这项研究中考虑了各种参数的影响,包括阻尼比,质量比和阻尼器的频率调谐比。理论和实验研究均表明,MPMD可以显着降低桥梁塔架在相关施工阶段的位移响应,并且MPMD可以显着提高塔架的总阻尼。

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