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首页> 外文期刊>Earthquake and structures: An International journal of earthquake engineering & earthquake effects on structures >Evaluation of local and global ductility relationships for seismic assessment of regular masonry-infilled reinforced concrete frames using a coefficient-based method
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Evaluation of local and global ductility relationships for seismic assessment of regular masonry-infilled reinforced concrete frames using a coefficient-based method

机译:使用基于系数的方法评估局部和全局延性关系,以进行常规砌体填充钢筋混凝土框架的地震评估

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摘要

Soft storey failure mechanism is a common collapse mode for masonry-infilled (MI) reinforced concrete (RC) buildings subjected to severe earthquakes. Simple analytical equations correlating global with local ductility demands are derived from pushover (PO) analyses for seismic assessments of regular MI RC frames, considering the critical interstorey drift ratio, number of storeys and lateral loading configurations. The reliability of the equations is investigated using incremental dynamic analyses for MI RC frames of up to 7 storeys. Using the analytical ductility relationship and a coefficient-based method (CBM), the response spectral accelerations and period shift factors of low-rise MI RC frames are computed. The results are verified through published shake table test results. In general applications, the analytical ductility relationships thus derived can be used to bypass the onerous PO analysis while accurately predicting the local ductility demands for seismic assessment of regular MI RC frames.
机译:软层破坏机制是遭受强烈地震的砖石填充钢筋混凝土(RC)建筑物的常见坍塌模式。考虑到关键的层间漂流比,层数和侧向荷载配置,从常规MI RC框架的抗震评估的推覆(PO)分析中得出了与全局和局部延性需求相关的简单解析方程。通过对多达7层的MI RC框架进行增量动态分析,研究了方程的可靠性。使用分析延性关系和基于系数的方法(CBM),计算了低层MI RC框架的响应频谱加速度和周期偏移因子。通过发布的振动台测试结果验证结果。在一般应用中,由此得出的分析延性关系可用于绕过繁重的PO分析,同时准确预测常规MI RC框架的地震评估所需的局部延性要求。

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