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Lateral crowd-structure interaction model to analyse the change of the modal properties of footbridges

机译:横向人群-结构相互作用模型分析人行桥的模态特性变化

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摘要

In this paper, a biomechanical crowd-structure interaction model is proposed and calibrated in order to take into account the change of the modal properties of footbridges in lateral direction induced by the pedestrian walking action. The model involves two submodels, namely, (a) the pedestrian-structure interaction and (b) the crowd submodels. In the first submodel, a single degree of freedom system, which simulates the behaviour of each pedestrian, is projected on the vibration modes of the structure. Herein, the parameters of the first submodel are estimated experimentally from the results of several pedestrian tests conducted on a real footbridge. For the second submodel, the crowd behaviour is modelled via a multiagent method. The performance of the overall model has been assessed successfully via the correlation between the change of the first experimental lateral natural frequency of another footbridge during a pedestrian test and the numerical predictions provided by the proposed model. Therefore, this model becomes a valuable tool to analyse numerically the change of the modal parameters of footbridges due to the pedestrian-structure interaction.
机译:本文提出了一种生物力学的人群-结构相互作用模型,并对其进行了校准,以考虑到行人步行行为引起的人行桥在横向上的模态特性变化。该模型涉及两个子模型,即(a)行人-结构相互作用和(b)人群子模型。在第一个子模型中,将模拟每个行人行为的单自由度系统投影到结构的振动模式上。在此,第一子模型的参数是根据在真实人行天桥上进行的几次行人测试的结果进行实验估算的。对于第二个子模型,通过多主体方法对人群行为进行建模。通过行人测试期间另一个人行桥的第一个实验侧向固有频率的变化与所提出的模型提供的数值预测之间的相关性,已成功评估了整个模型的性能。因此,该模型成为有价值的工具,可以对由于行人结构相互作用而引起的人行桥的模态参数进行数值分析。

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