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首页> 外文期刊>International journal of structural integrity >Serviceability analysis of a cable-supported footbridge subjected to human-induced loads
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Serviceability analysis of a cable-supported footbridge subjected to human-induced loads

机译:经受人诱导负载的电缆支撑的行人桥的可维护性分析

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Purpose - The purpose of this paper is to obtain the response time history curves of vertical and lateral acceleration in the span of the main beam under different loads through the finite element time-history analysis method, so as to realize the Serviceability Analysis of a Cable-Supported Footbridge Subjected to Human-Induced Loads, taking the long-span cable-supported footbridge over Dongtan River as an example. Design/methodology/approach - The finite element method is used for analysis of the footbridge. Findings - It is found that under the condition of low-density pedestrians walking freely, the response of human vertical vibration acceleration and the load conditions of pedestrian overpasses cannot meet the requirements of normal use. Therefore, the vertical acceleration of the footbridge should be designed to reduce vibratioa Under these two loading conditions, the lateral acceleration response meets the requirements of normal use. Originality/value - On the basis of summarizing the research at home and abroad, the analysis of human-induced vibration is mainly considered from two aspects: frequency regulation and dynamic response control. The walking load models mainly include Fourier series model, self-excitation model, impulse model, stochastic model and more; the crowd load models are divided into groups: low-density crowd walking freely, high-density crowd flowing and more. Therefore, it is very important to calculate the structural vibration response in the design of long-span cable-supported footbridges under pedestrian excitation to meet comfort requirements.
机译:目的 - 本文的目的是通过有限元时间历史分析方法在不同负载下获得主光束跨度横向加速度的响应时间历史曲线,从而实现电缆的可维修性分析 - 对人类诱导负荷进行的支持行人桥,以沿东潭河的长跨度电缆支撑的行人桥为例。设计/方法/方法 - 有限元方法用于分析行人天桥。结果 - 发现,在低密度行人自由行走的情况下,人工垂直振动加速度和行人立交桥的负荷条件的响应不能满足正常使用的要求。因此,人行桥的垂直加速度应设计为减少这两个装载条件下的振动,横向加速度符合正常使用的要求。原创性/价值 - 在总结国内外研究的基础上,人诱导振动的分析主要从两个方面考虑:频率调节和动态响应控制。行走载荷型号主要包括傅里叶系列模型,自我激励模型,脉冲模型,随机型号等;人群负荷模型分为群体:低密度人群自由行走,高密度人群流动等。因此,在行人励磁下计算长跨度电缆支撑的脚架设计中的结构振动响应是非常重要的,以满足舒适要求。

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