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SMD Model Parameters of Pedestrians for Vertical Human-Structure Interaction

机译:垂直人体结构互动行人的SMD模型参数

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Predictions of footbridge or long-span floor vibrations induced by pedestrian crowds can often prove inaccurate. One of the main deficiencies of the methods used for predicting these vibrations is the lack of consideration or erroneous representation of human-structure interaction (HSI). In this paper, the results from a series of footbridge tests designed to observe and then model HSI are presented. A laboratory footbridge was excited to three predetermined vibration amplitudes by an actuator, with and without the presence of pedestrians. In the tests with pedestrians, 4, 7 and 10 pedestrians were asked to walk repeatedly across the footbridge. Frequency response functions (FRF) of the footbridge with and without pedestrians were extracted from test data. To account for the HSI, pedestrians on the bridge were modeled as a spring-mass-damper (SMD) system attached to the footbridge. The mass, damping and stiffness of a single pedestrian were calculated by fitting the FRF obtained from the tests. It was found that the SMD models of pedestrians could adequately model HSI between a structure and its walking occupants. Furthermore, the stiffness and damping of the SMD model of a single pedestrian were found to be close to half of a standing person with two bent legs.
机译:行人人群诱导的行人天桥或长期地板振动的预测通常可以不准确地证明。用于预测这些振动的方法的主要缺陷之一是人类结构相互作用(HSI)缺乏考虑或错误的代表性。在本文中,展示了一系列旨在观察和模型HSI的一系列行人桥测试的结果。通过行人的存在,通过行人的致动器激发实验室行人的行人桥到三个预定的振动振动。在与行人的测试中,4,7和10个行人被要求反复穿过行人天桥。从测试数据中提取了带有和没有行人的行人天桥的频率响应函数(FRF)。要考虑HSI,桥上的行人被建模为连接到行人桥的弹簧质量阻尼器(SMD)系统。通过拟合从测试中获得的FRF来计算单个行人的质量,阻尼和刚度。有人发现,行人的SMD模型可以充分模拟结构与行走乘员之间的HSI。此外,发现单个行人的SMD模型的刚度和阻尼是靠近两个弯曲腿的常设人的一半。

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