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Foot force models of crowd dynamics on a wobbly bridge

机译:摇摆桥上人群动力学的足力模型

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Modern pedestrian and suspension bridges are designed using industry standard packages, yet disastrous resonant vibrations are observed, necessitating multimillion dollar repairs. Recent examples include pedestrian-induced vibrations during the opening of the Solférino Bridge in Paris in 1999 and the increased bouncing of the Squibb Park Bridge in Brooklyn in 2014. The most prominent example of an unstable lively bridge is the London Millennium Bridge, which started wobbling as a result of pedestrian-bridge interactions. Pedestrian phase locking due to footstep phase adjustment is suspected to be the main cause of its large lateral vibrations; however, its role in the initiation of wobbling was debated. We develop foot force models of pedestrians’ response to bridge motion and detailed, yet analytically tractable, models of crowd phase locking. We use biomechanically inspired models of crowd lateral movement to investigate to what degree pedestrian synchrony must be present for a bridge to wobble significantly and what is a critical crowd size. Our results can be used as a safety guideline for designing pedestrian bridges or limiting the maximum occupancy of an existing bridge. The pedestrian models can be used as “crash test dummies” when numerically probing a specific bridge design. This is particularly important because the U.S. code for designing pedestrian bridges does not contain explicit guidelines that account for the collective pedestrian behavior.
机译:现代人行天桥和悬索桥采用行业标准套件设计,但观察到灾难性的共振振动,需要维修数百万美元。最近的例子包括在1999年巴黎的Solférino桥启用期间,行人引起的振动,以及2014年在布鲁克林的Squibb Park桥的弹跳增加。不稳定的热闹桥梁最著名的例子是伦敦千禧桥,它开始摇晃。作为人行天桥相互作用的结果。怀疑由于脚步相位调整而导致的行人相位锁定是其较大的横向振动的主要原因;然而,人们对它在引发摇摆中的作用进行了辩论。我们开发了行人对桥梁运动的反应的脚力模型,以及详细但在分析上易于控制的人群锁相模型。我们使用生物力学启发的人群横向运动模型来研究桥梁要显着摆动必须达到的行人同步程度,以及临界人群大小。我们的研究结果可以用作设计人行天桥或限制现有桥梁的最大占用量的安全指南。当以数字方式探测特定桥梁设计时,行人模型可以用作“碰撞测试假人”。这一点特别重要,因为美国的行人天桥设计规范并未包含明确的准则来说明行人的集体行为。

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