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Risk-based mainshock-aftershock performance assessment of SMA braced steel frames

机译:基于风险的MACSHOCK-AFTERSHOCK性能评估SMA支撑钢架

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This study presents a methodology to generate probabilistic seismic demand models and hazard curves for steel frames with or without shape memory alloy (SMA) bracing systems under mainshock - aftershock sequences. First, three post-mainshock damage states were defined based on both peak inter-story drift and residual drift ratios. Incremental dynamic analyses (IDA) were performed considering only mainshock events to determine spectral acceleration demands corresponding to each mainshock damage level. Then, aftershock IDA were conducted on the post-mainshock SMRF and SMA frames at three damage states. To estimate the peak and residual drift response of SMRF and SMA braced frames subjected to a mainshock - aftershock sequence, empirical seismic demand models were developed. Next, a risk-based seismic performance evaluation study was conducted to generate seismic demand hazard curves for maximum and residual interstory displacement response. Results reveal the advantages of SMA braces in enhancing post-event functionality of steel frame buildings. In addition, defining damage states based on residual drifts is recommended while comparing the aftershock performance of conventional steel moment resisting frames with self-centering steel buildings.
机译:本研究提出了一种方法,用于在主轴 - 余震序列下产生或不具有或不具有形状记忆合金(SMA)支撑系统的钢帧的概率地震需求模型和危险曲线。首先,基于峰值阶层漂移和残余漂移比定义了三个后主屏蔽损伤状态。考虑MainShock事件以确定对应于每个主轴损伤级别的频谱加速要求来执行增量动态分析(IDA)。然后,在三个损伤状态下在主歇地SMRF和SMA框架上进行余震IDA。为了估算SMRF和SMA支撑框架的峰值和残余漂移响应,与主轴的余震序列进行了余震序列,开发了经验性地震需求模型。接下来,进行了一种风险的地震性能评估研究,以产生最大和残留壁垒响应的地震要求危害曲线。结果揭示了SMA支架在提高钢框架建筑物后功能功能方面的优势。此外,建议使用基于残留漂移的损坏状态,同时比较传统钢力矩抵抗框架与自定心钢制建筑物的余震性能。

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