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Analytical Modeling of Moderately Ductile RC Frame Structures for Seismic Performance Evaluation Using PERFORM-3D

机译:基于PERFORM-3D的中等延性RC框架结构抗震性能评估分析模型

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摘要

Performance-based vulnerability assessment of buildings requires dynamic inelastic analysis, which cannot be conducted without reliable analytical models. An important aspect of analytical building models involves hysteretic modeling of force-deformation relationships. PERFORM-3D software was used to generate fragility curves for moderately ductile buildings in Eastern Canada using hysteretic models with different features reflecting the recommendations of different North American standards. Two-story and five-story reinforced concrete (RC) frame buildings were considered for this purpose. The parameters that define rotational limits, as specified in ASCE 41-13 and ACI 369R-11 as well as the National Building Code of Canada (NBCC), were assessed. The results indicate that the variations in modeling parameters did not result in significant differences in fragility response at immediate occupancy and life safety performance levels, whereas the fragilities at the collapse performance level were affected. The probability of exceeding collapse prevention in buildings modeled as per NBCC was higher than those modeled using the ASCE 41-13 and ACI 369R-11 requirements.
机译:基于性能的建筑物脆弱性评估需要动态的无弹性分析,而没有可靠的分析模型则无法进行分析。分析建筑模型的一个重要方面涉及力-变形关系的滞后建模。 PERFORM-3D软件用于使用具有不同特征的滞回模型生成加拿大东部中等延性建筑的易碎性曲线,这些特征反映了不同北美标准的建议。为此,考虑了两层和五层的钢筋混凝土(RC)框架建筑物。评估了定义旋转极限的参数,如ASCE 41-13和ACI 369R-11以及加拿大国家建筑法规(NBCC)所述。结果表明,建模参数的变化在即时占用率和生命安全绩效水平下的脆性响应中并未产生显着差异,而在崩溃性能水平下的脆弱性受到了影响。在按照NBCC建模的建筑物中,超过防倒塌的可能性高于使用ASCE 41-13和ACI 369R-11要求建模的建筑物。

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