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Seismic Fragility Analysis of Long-Span Bridge System with Durability Degradation

机译:耐久性降解的长跨度桥系统地震脆性分析

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摘要

An offshore long-span continuous rigid-frame bridge is taken as an example to study the effect of degradation of bond-slip behavior on the seismic performance of bridges in an offshore environment during a service period. On the basis of a numerical simulation analysis using the OpenSeeS platform, the influence of durability degradation of concrete carbonization, steel corrosion, and degradation of bond-slip performance is considered collectively using incremental dynamic analysis method to examine the time-varying seismic fragility of the offshore bridge. Results show that when bond slip is considered, the exceedance probability of the bridge components and the system increases significantly, and the durability degradation caused by concrete carbonization and chloride ion erosion in the whole life cycle increases the seismic response of the bridge structure. The results of the proposed time-varying seismic fragility analysis indicate that, considering the degradation of bond-slip behavior of reinforced concrete after the durability degradation of materials, the exceedance probability of the pier, bearing, abutment, and system increases with the extension of service period and the increase in seismic strength under earthquake action. In addition, with the extension of service time, the effect of bond slip on the seismic fragility of components and system gradually decreases.
机译:采用近海长期连续刚性框架桥,以研究在服务期间在海上环境中桥梁抗震性能下降的效果。在使用开放式平台的数值模拟分析的基础上,使用增量动态分析方法共同考虑了混凝土碳化,钢腐蚀和粘合性能降解的耐久性降低的影响,检查了时变的地震脆性海上桥梁。结果表明,当考虑粘结滑动时,桥部件的超概率和系统的概率显着增加,并且整个生命周期中混凝土碳化和氯离子腐蚀引起的耐久性降解增加了桥梁结构的地震响应。所提出的时变地震脆弱性分析的结果表明,考虑到材料耐久性劣化后钢筋混凝土的粘结净化行为的降解,码头,轴承,基台和系统的延伸延伸的概率增加服务期间和地震作用下地震力量的增加。此外,随着服务时间的延长,债券滑移对组分和系统的地震脆性的影响逐渐降低。

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