Research on seismic fragility of subway station based on incremental dynamic analysis method

Jiaxi Ge, Du Du
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Abstract

Seismic intensity measure is an significant parameter that affects the accuracy of structural seismic risk assessment, and plays an important role in the performance-based earthquake engineering research framework. Taking a two story, three span, and shallow buried subway station as the research object, a two-dimensional finite element analysis model of soil structure underground in a typical engineering site was established using ANSYS. Ten earthquake records were selected from PEER as input, and the structural seismic fragility analysis method based on incremental dynamic analysis (IDA) method was introduced into the subway station structure. The maximum story drift angle was used as the structural damage index, and three typical seismic intensity measures were selected, the exploration is conducted on the seismic intensity measures applicable to shallow buried subway stations and the variation pattern of seismic response of subway stations with increasing seismic amplitude. The seismic fragility curve of shallow buried subway station structures is established to obtain the failure probability of the structure at different seismic intensity levels. The analysis results indicate that for shallow buried subway stations, PGA is the most suitable seismic intensity measure, and the comparison with existing empirical fragility curves shows that the vulnerability analysis method is feasible and can quantitatively provide the failure probability of structures at different performance levels, providing reference for seismic design of underground structures.
基于增量动力分析方法的地铁车站地震脆性研究
地震烈度是影响结构地震风险评估准确性的重要参数,在基于性能的地震工程研究框架中发挥着重要作用。以某两层三跨浅埋地铁车站为研究对象,利用 ANSYS 建立了典型工程场地地下土体结构的二维有限元分析模型。从 PEER 中选取了十次地震记录作为输入,并将基于增量动力分析法(IDA)的结构地震脆性分析方法引入到地铁车站结构中。以最大层间漂移角作为结构损伤指标,选取了三种典型的地震烈度计,探讨了适用于浅埋式地铁车站的地震烈度计,以及地铁车站地震反应随震级增大的变化规律。建立了浅埋地铁车站结构的地震脆性曲线,得出了结构在不同地震烈度水平下的破坏概率。分析结果表明,对于浅埋地铁车站,PGA 是最合适的地震烈度度量,与现有经验脆性曲线的对比表明,该脆性分析方法是可行的,可以定量提供结构在不同性能水平下的破坏概率,为地下结构的抗震设计提供参考。
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