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Numerical evaluation: AISI S400 steel-sheathed CFS framed shear wall seismic design method

机译:数值评估:AISI S400钢套CFS框架剪力墙抗震设计方法

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Seismic design provisions for steel-sheathed cold-formed steel framed shear walls, specific to Canada, are not provided in the existing AISI S213 Standard "North American Standard for Cold-Formed Steel Framing - Lateral Design". A multi-phase approach was adopted in order to develop appropriate seismic design provisions for inclusion in the new AISI S400 Standard "North American Standard for Seismic Design of Cold-Formed Steel Structural Systems". The approach included the extensive displacement based testing and dynamic testing of shear walls, the analysis of the test data results, the development and calibration of dynamic numerical models in OpenSees, and lastly, the dynamic response history analyses of twelve archetype buildings designed for the seismic hazard in three cities; Halifax (low seismic), Montreal (medium seismic) and Vancouver (high seismic). It is this last phase of the study that is documented herein. Fragility curves were developed from the buildings' response to 44 scaled ground motion records following a method adapted from the FEMA P695 analysis methodology. The results showed that the design method is appropriate, including the seismic force modification factors of R-d=2 and R-o=1.3. Improvement to the predicted seismic response of CFS framed buildings could be forthcoming if one were to account for the contribution of the non-structural gypsum wall panels. (C) 2015 Elsevier Ltd. All rights reserved.
机译:现有的AISI S213标准“北美冷弯型钢框架-横向设计标准”中未提供加拿大专用的钢套冷弯型钢框架剪力墙的抗震设计规定。为了制定适当的抗震设计规定,将其纳入新的AISI S400标准“北美冷弯型钢结构系统抗震设计标准”中,采用了多阶段方法。该方法包括广泛的基于位移的剪力墙测试和动态测试,测试数据结果分析,OpenSees中动态数值模型的开发和校准,最后是为地震设计的十二个原型建筑的动态响应历史分析三个城市的灾害;哈利法克斯(低地震),蒙特利尔(中地震)和温哥华(高地震)。本文记录的是研究的最后阶段。脆弱性曲线是根据FEMA P695分析方法改编的方法,根据建筑物对44个按比例缩放的地面运动记录的响应绘制的。结果表明,该设计方法是适当的,包括R-d = 2和R-o = 1.3的地震力修正因子。如果要考虑非结构石膏墙板的作用,可以改善CFS框架建筑物的预期地震响应。 (C)2015 Elsevier Ltd.保留所有权利。

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