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Probabilistic seismic performance assessment of timber-steel hybrid structures subjected to mainshock-aftershock sequences

机译:主轴余震序列对木材钢混合结构的概率抗震性能评估

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摘要

Timber-steel hybrid structural system is an effective solution to expand the application of wood to mid-rise buildings. In this paper, the impact of mainshock-aftershock sequences is integrated into the probabilistic seismic demand analysis (PSDA) on timber-steel hybrid structures. A bilinear seismic demand model is adopted to develop the probabilistic seismic demand model (PSDM) for timber-steel hybrid structure considering the intensity levels of both mainshock and aftershock, and the seismic fragility surface is generated accordingly. The critical intensity is defined to quantify the condition when the aftershock damage leads to the increase of structural demand, which exhibits nonlinear trend with respect to the mainshock intensity. The PSDA result shows that choosing appropriate design parameters, such as larger wall-to-frame stiffness ratio, can reduce the seismic fragility of structures. Additionally, the joint probabilistic modeling is carried out using copula approach. It allows to predict the exceedance probability of a structure under mainshock-aftershock sequences conditioned on the mainshock damage. Results show that the Clayton copula is the best-fit copula to construct the joint probabilistic model, and larger wall-to-frame stiffness ratio is beneficial to reduce the exceedance probability of the timber-steel hybrid structures.
机译:木材钢混合结构系统是一种有效的解决方案,可扩展木材在中层建筑物中的应用。本文中,主轴余震序列的影响集成到木材 - 钢混合结构上的概率抗震性能分析(PSDA)中。采用双线性地震需求模型来开发用于木钢混合结构的概率地震需求模型(PSDM)考虑到主轴和余震的强度水平,相应地产生地震脆性表面。当余震损坏导致结构需求的增加导致结构需求的增加时,定义临界强度以量化条件,这表现出相对于主屏蔽强度的非线性趋势。 PSDA结果表明,选择合适的设计参数,例如较大的壁到框架刚度比,可以减少结构的地震脆性。另外,使用Copula方法进行联合概率建模。它允许预测在主屏蔽损伤的主轴余震序列下的结构下的概率。结果表明,克莱顿Copula是构造联合概率模型的最佳谱系,壁到框架刚度比较大,有利于降低木材钢混合结构的超标概率。

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