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A spectral density approach for modelling continuous vertical forces on pedestrian structures due to walking

机译:一种频谱密度方法,用于模拟步行导致的行人结构上的连续垂直力

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摘要

Existing walking models used for vibration serviceability assessment of structures carrying pedestrians are typically based on measurements of single footfalls replicated at precise intervals. This assumed perfect periodicity allows walking forces to be modelled as a Fourier series based on the walking pace and its integer multiples. This paper examines real continuous walking forces obtained from an instrumented treadmill and the effect of their random imperfections through time simulations of structural response and shows that there are significant differences between responses due to the imperfect real walking forces and the equivalent perfectly periodic simulation. These differences are most significant for higher harmonics where the simulated vibration response is overestimated. As a realistic representation of imperfect walking is an auto-spectral density function, the random character naturally leads to a stochastic approach to treatment of pedestrian loading applied in the frequency domain. The approach can be used for single pedestrians as well as crowd loading where correlation between pedestrians as well as statistics of their pacing rates is used.
机译:现有的步行模型用于评估行人的建筑物的振动可服务性,通常基于对精确间隔重复的单个脚步的测量。这种假定的理想周期性使步行力可以根据步行速度及其整数倍数建模为傅立叶级数。本文通过结构响应的时间仿真研究了从仪器式跑步机获得的真实连续行走力及其随机缺陷的影响,并表明,由于不完美的真实行走力和等效的完美周期模拟,响应之间存在显着差异。这些差异对于高次谐波最为显着,在高次谐波中高估了模拟的振动响应。由于不完美步​​行的真实表现是自动频谱密度函数,因此随机特征自然会导致采用随机方法来处理频域中施加的行人荷载。该方法可用于单个行人以及人群负载,其中使用了行人之间的相关性及其起搏率的统计信息。

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