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首页> 外文期刊>Journal of Constructional Steel Research >Seismic design procedure for cold-formed steel sheathed shear wall frames: Proposal and evaluation
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Seismic design procedure for cold-formed steel sheathed shear wall frames: Proposal and evaluation

机译:冷弯型钢护套剪力墙框架的抗震设计程序:建议和评估

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摘要

A seismic design procedure for CFS structures employing sheathed shear wall panels (SWP), compatible with the framework of the Eurocodes, is proposed in this paper. In order to assess the structural behaviour and generate the required data for the appraisal of the seismic design procedure, the OpenSees finite element environment was used to simulate the nonlinear behaviour of CFS-SWP adopting a novel deteriorating hysteresis model. Nonlinear static (pushover) and incremental dynamic analyses (IDA) have been carried out on 54 CFS-SWP frames having 2-, 4- and 5-storeys designed with varying seismic intensity levels. Fragility curves based on buildings collapse probability have been developed following the FEMA P695 methodology. Based on the defined design requirements, the CFS structural system evaluated in this study is shown to meet the acceptance criteria for a behaviour factor (q) equal to 2 for low- and moderate-seismicity. Furthermore, the results reveal that the lateral overstrength has a relevant influence on the probability of collapse and that an improved performance could be achieved if continuity of the CFS-SWP chord studs along the height is enforced. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了采用铠装剪力墙板(SWP)的CFS结构的抗震设计程序,该程序与欧洲规范的框架兼容。为了评估结构性能并生成评估抗震设计程序所需的数据,采用新颖的恶化滞后模型,使用OpenSees有限元环境模拟CFS-SWP的非线性行为。已经对54层CFS-SWP框架进行了非线性静态(推覆)和增量动态分析(IDA),这些框架具有2层,4层和5层,并设计了不同的地震烈度水平。遵循FEMA P695方法开发了基于建筑物倒塌概率的脆性曲线。根据定义的设计要求,在本研究中评估的CFS结构系统显示出对于低地震和中地震的行为因子(q)等于2的接受标准。此外,结果表明,横向超强度对倒塌的概率有相关影响,并且,如果加强沿高度的CFS-SWP弦钉的连续性,则可以提高性能。 (C)2016 Elsevier Ltd.保留所有权利。

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