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Multi-variate seismic demand modelling using copulas:application to non-ductile reinforced concrete frame in Victoria, Canada

机译:使用copulas进行多变量地震需求建模:在加拿大维多利亚州的非延性钢筋混凝土框架中的应用

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摘要

Joint probabilistic characteristics of key structural demand variables due to intense ground shaking are important for quantitative seismic loss estimation. Current damage-loss models require inputs of multiple seismic demand parameters, such as maximum/residual inter-storey drift ratio (ISDR) and peak floor acceleration (PFA). This study extends current seismic demand estimation methods based on incremental dynamic analysis (IDA) by characterising dependence among different engineering demand parameters (EDP) using copulas explicitly. The developed method is applied to a 4-storey non-ductile reinforced concrete (RC) frame in Victoria, British Columbia, Canada. The developed multi-variate seismic demand model is integrated with a storey-based damage-loss model to assess the economic consequences due to different earthquake loss generation modes (i.e. non-collapse repairs, collapse, and demolition). Results obtained from this study indicate that the effects of multi-variate seismic demand modelling on the expected seismic loss ratios are significant. The critical information is the limit state threshold for demolition. In addition, consideration of a realistic dependence structure of maximum and residual inter-storey drift ratios can be important for seismic loss estimation as well as for multi-criteria seismic performance evaluation.
机译:由于强烈的地面震动而导致的关键结构需求变量的联合概率特征对于定量地震损失估算很重要。当前的损损模型需要多个地震需求参数的输入,例如最大/剩余层间漂移比(ISDR)和峰值地面加速度(PFA)。这项研究通过使用copulas明确描述不同工程需求参数(EDP)之间的依赖关系,扩展了基于增量动态分析(IDA)的当前地震需求估算方法。该开发的方法应用于加拿大不列颠哥伦比亚省维多利亚市的4层非延性钢筋混凝土(RC)框架。已开发的多元地震需求模型与基于层的破坏损失模型相集成,以评估由于不同地震损失产生模式(即非塌方修复,倒塌和拆除)而造成的经济后果。从这项研究中获得的结果表明,多元地震需求模型对预期地震损失率的影响是显着的。关键信息是拆除的极限状态阈值。此外,考虑最大和剩余层间漂移比的实际相关性结构对于地震损失估计以及多准则地震性能评估可能很重要。

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