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首页> 外文期刊>Advances in Structural Engineering >Seismic Response Analysis of Multiple-Frame Bridges with Unseating Restrainers Considering Ground Motion Spatial Variation and SSI
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Seismic Response Analysis of Multiple-Frame Bridges with Unseating Restrainers Considering Ground Motion Spatial Variation and SSI

机译:考虑地震动空间变化和SSI的无约束约束多框架桥梁地震响应分析

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摘要

Unseating damages of bridge decks have been observed in many previous major earthquakes due to large relative displacement exceeding the available seat length. Steel cable restrainers are often used to limit such relative displacements. Present restrainer design methods are based on the relative displacements caused by the different dynamic characteristics of adjacent bridge structures. However, the relative displacements in bridge structures are not only caused by different dynamic characteristics of adjacent bridge segments. Recent studies indicated that differential ground motions at supports of bridge piers and Soil Structure Interaction (SSI) could have a significant influence on the relative displacement of adjacent bridge components. Thus the present design methods could significantly underestimate the relative displacement responses of the adjacent bridge components and the stiffness of the restrainers required to limit these displacements. None of the previous investigations considered the effects of spatially varying ground motions in evaluating the adequacy of the restrainers design methods. Moreover, the code recommendation of adjusting the fundamental frequencies of adjacent bridge structures close to each other to mitigate relative displacement induced damages is developed based on the uniform ground motion assumption. Investigations on its effectiveness to mitigate the relative displacement induced damages on the bridge structures subjected to spatially varying ground motion and SSI are made. This paper discusses the effects of spatially varying ground motions and SSI on the responses of the multiple-frame bridges with unseating restrainers through inelastic bridge response analysis.
机译:在以前的许多大地震中,由于较大的相对位移超过了可用的座椅长度,因此已经观察到桥面的非座面损坏。钢缆限制器通常用于限制这种相对位移。目前的约束器设计方法是基于相邻桥梁结构不同动力特性引起的相对位移。然而,桥梁结构中的相对位移不仅是由相邻桥梁的不同动力特性引起的。最近的研究表明,桥墩支座处的地震动和土壤结构相互作用(SSI)可能会对相邻桥梁构件的相对位移产生重大影响。因此,本设计方法可能会大大低估相邻桥构件的相对位移响应以及限制这些位移所需的约束器的刚度。先前的研究均未考虑空间变化的地面运动在评估约束器设计方法是否适当时的影响。此外,基于均匀的地面运动假设,提出了调整彼此相邻的桥梁结构的基频以减轻相对位移引起的损伤的代码建议。研究了其在减轻因空间变化的地面运动和SSI引起的桥梁结构上相对位移引起的损伤方面的有效性。本文通过非弹性桥梁响应分析,讨论了空间变化的地震动和SSI对具有无约束约束的多框架桥梁响应的影响。

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