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首页> 外文期刊>Journal of structural engineering >Benchmark Footbridge for Vibration Serviceability Assessment under the Vertical Component of Pedestrian Load
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Benchmark Footbridge for Vibration Serviceability Assessment under the Vertical Component of Pedestrian Load

机译:行人荷载垂直分量下振动可服务性评估的基准行人天桥

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摘要

Vibration serviceability criteria are governing the design and determining the cost of modern, slender footbridges. Efficient and reliable evaluation of dynamic performance of these structures usually requires a detailed insight into the structural behavior under human-induced dynamic loading. Design procedures are becoming ever more sophisticated and versatile, and for their successful use, a thorough verification on a range of structures is required. The verification is currently hampered by a lack of experimental data that are presented in the form directly usable in the verification process. This study presents a comprehensive experimental data set acquired on a box-girder footbridge that is lively in the vertical direction. The data are acquired under normal operating conditions and are presented using a range of descriptors suitable for easy extraction of desired information. This will allow researchers and designers to use this bridge as a benchmark structure for vibration serviceability checks under the vertical component of the pedestrian loading. In addition, capabilities of a sophisticated force model (developed for walking over rigid surfaces) to predict vibrations on this lively bridge are investigated. It was found that there are discrepancies between computed and measured responses. These differences most likely are a consequence of the pedestrian-structure interaction on this lively bridge. The interaction was then quantified in the form of pedestrian contribution to the overall damping of the human-structure system.
机译:振动适用性准则支配着设计,并决定了现代细长的人行天桥的成本。对这些结构的动态性能进行有效而可靠的评估通常需要对人为引起的动态载荷下的结构行为进行详细的了解。设计程序变得越来越复杂和通用,并且要成功使用它们,就必须对一系列结构进行彻底的验证。当前,由于缺乏以可直接在验证过程中使用的形式呈现的实验数据而阻碍了验证。这项研究提出了一个在垂直方向上活跃的箱梁人行天桥上获得的综合实验数据集。数据是在正常操作条件下获取的,并使用一系列适合于容易提取所需信息的描述符来呈现。这将使研究人员和设计人员可以将该桥用作行人荷载垂直分量下的振动可服务性检查的基准结构。此外,还研究了复杂的力模型(为在刚性表面上行走而开发)可预测此活泼桥梁上的振动的功能。发现计算和测量的响应之间存在差异。这些差异很可能是由于这座热闹的桥梁上的行人与建筑物相互作用的结果。然后以行人对人体结构系统整体阻尼的贡献的形式量化相互作用。

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