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首页> 外文期刊>Journal of Sound and Vibration >Crowd-induced random vibration of footbridge and vibration control using multiple tuned mass dampers
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Crowd-induced random vibration of footbridge and vibration control using multiple tuned mass dampers

机译:人群引起的人行天桥随机振动和使用多重调谐质量阻尼器的振动控制

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摘要

This paper investigates vibration characteristics of footbridge induced by crowd random walking, and presents the application of multiple tuned mass dampers (MTMD) in suppressing crowd-induced vibration. A single foot force model for the vertical component of walking-induced force is developed, avoiding the phase angle inaccessibility of the continuous walking force. Based on the single foot force model, the crowd-footbridge random vibration model, in which pedestrians are modeled as a crowd flow characterized with the average time headway, is developed to consider the worst vibration state of footbridge. In this random vibration model, an analytic formulation is developed to calculate the acceleration power spectral density in arbitrary position of footbridge with arbitrary span layout. Resonant effect is observed as the footbridge natural frequencies fall within the frequency bandwidth of crowd excitation. To suppress the excessive acceleration for human normal walking comfort, a MTMD system is used to improve the footbridge dynamic characteristics. According to the random vibration model, an optimization procedure, based on the minimization of maximum root-mean-square (rms) acceleration of footbridge, is introduced to determine the optimal design parameters of MTMD system. Numerical analysis shows that the proposed MTMD designed by random optimization procedure, is more effective than traditional MTMD design methodology in reducing dynamic response during crowd-footbridge resonance, and that the proper frequency spacing enlargement will effectively reduce the off-tuning effect of MTMD.
机译:本文研究了人群随机行走引起的人行桥的振动特性,并提出了多重调谐质量阻尼器(MTMD)在抑制人群引起的振动中的应用。建立了步行力垂直分量的单足力模型,避免了连续步行力无法获得相角。在单脚力模型的基础上,建立了考虑人行桥最差振动状态的人群-人行桥随机振动模型,在该模型中,行人被建模为具有平均前进时间的人群流动。在该随机振动模型中,建立了解析公式来计算具有任意跨度布局的人行桥在任意位置的加速度功率谱密度。当人行桥固有频率落入人群激励的频率带宽内时,会观察到共振效应。为了抑制过大的加速度以获得人的正常步行舒适性,MTMD系统用于改善人行桥的动态特性。根据随机振动模型,基于最小化人行桥最大均方根加速度的优化程序,确定了MTMD系统的最佳设计参数。数值分析表明,采用随机优化程序设计的MTMD在降低人行桥共振时的动态响应方面比传统的MTMD设计方法更为有效,适当的频率间隔增大将有效地降低MTMD的失谐效应。

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