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Effects of Stochastic Excitation and Phase Lag of Pedestrians on Lateral Vibration of Footbridges

机译:行人随机激励和相位滞后对扶手侧振动的影响

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摘要

Incidents of pedestrian-induced large lateral vibrations of footbridges reveal the occurrence of an instability-type phenomenon in pedestrian-induced vibration. However, the mechanism involved has yet to be clearly explained. In this work, a novel model for predicting the lateral vibration of footbridges is proposed. Under an algebraic framework of nonlinear stochastic vibration, the narrow-band vibration caused by the pedestrian intra-subject randomness and the phase lag between the footbridge motion and the pedestrian load are considered. The critical condition that triggers the large lateral vibration of the footbridge is identified using the stochastic averaging method and the concept of stability based on the Lyapunov exponent. The validity of the proposed method is confirmed through case studies of three bridges. Through a parametric analysis, the effects of several crucial parameters on the stability/instability of vibration are discussed. Finally, conclusions are drawn regarding insights that can be useful to the future designs of footbridges.
机译:行人诱导的足迹的事件揭示了行人诱导的振动中不稳定型现象的发生。但是,所涉及的机制尚未明确解释。在这项工作中,提出了一种预测脚架横向振动的新型模型。在非线性随机振动的代数框架下,考虑了由行人内部随机性和行人桥运动和行人负荷之间的行人内部随机性和相位滞后引起的窄带振动。使用随机平均方法和基于Lyapunov指数的稳定性概念来识别触发行人天桥的大横向振动的临界条件。通过对三座桥梁的案例研究证实了所提出的方法的有效性。通过参数分析,讨论了若干关键参数对振动稳定性/不稳定性的影响。最后,得出结论是关于洞察力对未来的脚架设计有用。

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