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Quantifying the Ductility-Related Force Modification Factor for 10-Story Timber-RC Hybrid Building Using FEMA P695 Procedure and Considering the 2015 NBC Seismic Hazard

机译:使用FEMA P695程序量化10层木材RC混合建筑的延展性相关力修改因子,并考虑到2015年NBC地震危害

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In this work, a 10-story uncoupled (10S-U) hybrid seismic force resisting system, consisting of cross-laminated timber (CLT) walls and reinforced concrete (RC) beams, is considered. Required design ductility factor Rd, in congruence with the National Building Code of Canada, was developed using FEMA P695 collapse risk procedure. Two trial Rd factors, R-d = 2 and R-d = 3, were first used to design the hybrid building for seismicity of Vancouver, BC, and 3D numerical models were developed in Open System for Earthquake Engineering Simulation (OpenSees) finite element framework. The energy dissipation of the structural system was enhanced using buckling restraining brace hold-downs and energy dissipator connection between the panels. The rocking response mechanism governed and, as a result, the cyclic pushover results show recentering capability. A suitable set of 30 ground motion records that reflect the seismic hazard of Vancouver, British Columbia, was selected in congruence with the 2015 National Building Code of Canada (NBC). Using incremental dynamic analysis, the collapse risk and collapse margin ratios were obtained to check the suitability of the two proposed Rd factors. The R-d = 2 factor was shown to be acceptable for the 10S-U structural system. (C) 2021 American Society of Civil Engineers.
机译:在这项工作中,一个10层非耦合(10S-U)混合地震力抵抗系统,由横层积材(CLT)壁和钢筋混凝土(RC)梁,被认为的。所需的设计延性系数路,与加拿大国家建筑规范的一致性,利用FEMA P695崩溃的危险程序开发。两个试验路因素中,R d = 2和R d = 3时,首先用于设计温哥华,不列颠哥伦比亚省的地震活动的混合建设,以及3D数字模型是在开放系统开发了用于地震工程模拟(OpenSees的)有限元框架。结构系统的能量耗散,使用屈曲抑制支架的压板和所述面板之间的能量耗散器连接增强。摇摆响应机制和约束,因此,循环推覆。结果表明recentering能力。一套合适的30地面运动的记录,反映温哥华,不列颠哥伦比亚省的地震灾害中的一致性选择了与加拿大的2015年国家建筑规范(NBC)。使用增量动态分析,得到了崩溃的风险和坍塌边缘比检查提出的两种路因素的适用性。的R-d = 2因子被证明是用于10S-U结构体系可以接受的。 (c)2021年美国土木工程师协会。

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