Seismic fragility analysis of concrete bridges subjected to far- and near-field records

IF 1.2 4区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY Proceedings of the Institution of Civil Engineers-Structures and Buildings Pub Date : 2023-07-01 DOI:10.1680/jstbu.20.00284
Hamid Reza Ebrahimi Motlagh, Payam Tehrani
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引用次数: 3

Abstract

Near-field (NF) and far-field (FF) ground motion records were used to develop seismic fragility curves at different damage states for a multi-span reinforced concrete bridge using incremental dynamic analysis (IDA). The use of different methods for the prediction of the fragility curves, including truncated IDA, was also investigated. The results indicated that the median spectral acceleration causing different states of earthquake damage was lower for the NF records than for the FF records. In other words, the studied bridge was more vulnerable when subjected to NF records. The significantly larger probabilities of failure at different damage states, especially at the bar buckling damage state, for the case of NF records was attributed to the significantly larger variability of the results compared with the case of FF records. The results also showed that the probability of failure at different damage levels was relatively low for the case of the FF ground motions. It was also found that truncated IDA could be used to predict the fragility curves with sufficient accuracy for the cases studied.
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远场和近场记录下混凝土桥梁的地震易损性分析
利用近场(NF)和远场(FF)地震动记录,利用增量动力分析(IDA)建立了某多跨钢筋混凝土桥梁不同损伤状态下的地震易损性曲线。使用不同的方法来预测脆弱性曲线,包括截断的IDA,也进行了研究。结果表明,NF记录引起不同状态地震破坏的中位数谱加速度小于FF记录。换句话说,当受到NF记录时,所研究的桥梁更加脆弱。在不同的损伤状态下,特别是在杆屈曲损伤状态下,NF记录的破坏概率显著大于FF记录,这是由于结果的变异性显著大于FF记录。结果还表明,在FF地震动的情况下,不同损伤水平下的失效概率相对较低。截断的IDA可用于预测所研究病例的脆性曲线,具有足够的准确性。
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来源期刊
CiteScore
3.40
自引率
6.20%
发文量
61
审稿时长
12 months
期刊介绍: Structures and Buildings publishes peer-reviewed papers on the design and construction of civil engineering structures and the applied research associated with such activities. Topics include the design, strength, durability and behaviour of structural components and systems. Topics covered: energy conservation, people movement within and around buildings, strength and durability of steel and concrete structural components, and the behaviour of building and bridge components and systems
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