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MITIGATION OF HUMAN-INDUCED VIBRATIONS IN SUSPENSION FOOTBRIDGES VIA MULTIPLE TUNED MASS DAMPERS

机译:通过多个调谐质量阻尼器减轻悬浮脚桥中的人类诱导振动

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The dynamic response of suspension footbridges to pedestrian-induced excitations and its passive mitigation are investigated. The linearized equations of motion are obtained from a nonlinear model and the Galerkin discretization approach is employed to solve both the free and forced elastodynamic problems. First, the leading characteristics of the Singapore Suspension Footbridge, whose lowest two modes possess closely-spaced frequencies near the so-called crossover condition, are outlined. Further it is shown the effectiveness of the multiple tuned mass dampers (TMD) architecture. To this end, the frequency-response functions as well as direct integration of the equations of motion are employed to predict the response of the footbridge by itself and with the addition of the TMDs under various scenarios of pedestrian excitation, namely, walking, running and jumping.
机译:研究了悬架脚架对行人引起的激励及其被动缓解的动态响应。从非线性模型获得线性化的运动方程,采用Galerkin离散化方法来解决自由和强制弹性动力学问题。首先,概述了新加坡悬架行人桥的主要特点,其最低两种模式具有靠近所谓的交叉条件附近的紧密间隔频率。此外,示出了多调调质量(TMD)架构的有效性。为此,采用频率响应函数以及运动方程的直接集成来预测人行桥的响应,并且在行人激励的各种场景下添加TMD,即行走,运行和跳跃。

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