考虑NBCC 2020危害的不同耗能连接rc -木混合结构建筑地震倒塌风险

Ikenna Odikamnoro, Prakash S Badal, Henry Burton, Solomon Tesfamariam
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引用次数: 2

摘要

2020年加拿大国家建筑规范(NBCC)地震危险模型(SHM)标志着其前身(NBCC 2015)的全面更新。对于加拿大的不同地区,这将对新建筑的设计和现有建筑的性能评估产生影响。在本研究中,最近开发的钢筋混凝土(RC)抗弯矩框架和交叉层压木材(CLT)填充的混合建筑体系对最新SHM的抗震性能进行了评估。这座六层的RC-CLT混合系统位于加拿大温哥华,采用直接基于位移的方法设计。不列颠哥伦比亚省西南部地震活动性非常强,地震构造复杂,包括俯冲、浅层地壳和板内断裂机制。从PEER和KiK-net数据库中选择了一组危险一致的40对地面运动对,并用于估计建筑物的抗震性能。研究了钢缝阻尼器(与大磁滞回线有关)和旗形能量耗散器(与重入能力有关)的影响。结果表明,该混合体系具有良好的抗震性能,在2475年重现周期的震动强度下,其倒塌概率为2-3%。采用钢缝阻尼器的混合结构的倒塌裕度比为2.8,采用旗形阻尼器的混合结构的倒塌裕度比为3.5 ~ 3.6。旗形消能器可以显著降低混合结构的残余漂移。此外,旗形减振器混合结构的抗震性能随着重入比的增加而略有改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Seismic collapse risk of RC-timber hybrid building with different energy dissipation connections considering NBCC 2020 hazard.

Seismic collapse risk of RC-timber hybrid building with different energy dissipation connections considering NBCC 2020 hazard.

Seismic collapse risk of RC-timber hybrid building with different energy dissipation connections considering NBCC 2020 hazard.

Seismic collapse risk of RC-timber hybrid building with different energy dissipation connections considering NBCC 2020 hazard.

The 2020 National Building Code of Canada (NBCC) seismic hazard model (SHM) marks a comprehensive update over its predecessor (NBCC 2015). For different regions in Canada, this will have an impact on the design of new buildings and performance assessment of existing ones. In the present study, a recently developed hybrid building system with reinforced concrete (RC) moment-resisting frames and cross-laminated timber (CLT) infills is assessed for its seismic performance against the latest SHM. The six-story RC-CLT hybrid system, designed using the direct displacement-based method, is located in Vancouver, Canada. Along with very high seismicity, southwestern British Columbia is characterized by complex seismotectonics, consisting of subduction, shallow crustal, and in-slab faulting mechanisms. A hazard-consistent set of 40 ground motion pairs is selected from the PEER and KiK-net databases, and used to estimate the building's seismic performance. The effects of using steel slit dampers (associated with large hysteresis loops) and flag-shaped energy dissipators (associated with the recentering capability) are investigated. The results indicate that the hybrid system has good seismic performance with a probability of collapse of 2-3% at the 2475-year return period shaking intensity. The hybrid building with steel slit dampers exhibits a collapse margin ratio of 2.8, which increases to 3.5-3.6 when flag-shaped dissipators are used. The flag-shaped dissipators are found to significantly reduce the residual drift of the hybrid building. Additionally, the seismic performance of the hybrid building equipped with flag-shaped dissipators is found to improve marginally when the recentering ratio is increased.

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