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Design-parameter study on seismic performance of chevron-configured SCBFs with yielding beams

机译:具有屈服束的人脚轮配置SCBF的地震性能的设计参数研究

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Special concentrically braced frames (SCBFs) designed to meet the 2016 American Institute of Steel Construction Seismic Provisions for Structural Steel Buildings require beams in chevron configurations to develop expected brace forces associated with large lateral deformations. The braces are assumed to fully yield in tension and buckle and deteriorate in compression. These brace forces impose axial forces, shear forces, and bending moments in beams that usually require relatively deep and heavy beam cross sections in comparison to gravity framing and beams in other bracing configurations. A research study was undertaken to develop a new design approach that permits the use of smaller beams engaged as secondary yielding mechanisms. The proposed design approach was developed from previous large-scale experiments and nonlinear response-history analyses. However, the variety of brace sizes and frame geometries used in research to-date is limited. Therefore, two studies were conducted using nonlinear analysis to consider practical design parameters that could impact seismic performance. First, a large parametric study was conducted on three-story chevron SCBFs under static cyclic loading. Second, different methods were used to design typical three-story chevron SCBF buildings for a site in Seattle, WA, which were then subjected to response-history analysis using earthquakes representative of the 2%/50-year hazard level. The studies indicate that low-rise buildings designed by the proposed method have equal or improved seismic performance compared to those designed by conventional design methods, and in conjunction with previous research, they help support future use of the proposed method in practice. (c) 2021 Elsevier Ltd. All rights reserved.
机译:特殊的同心支撑框架(SCBFS)旨在满足2016年美国钢结构建筑地震规定的结构钢建筑物需要雪佛龙配置的梁,以开发与大横向变形相关的预期支撑力。假设胶带完全屈服地屈服并弯曲并劣化。这些支架力施加轴向力,剪切力和横梁中的弯曲力矩,其与其他支撑配置中的重力框架和梁相比,通常需要相对深和重的梁横截面。开展了一种研究,以开发一种新的设计方法,允许使用作为次级产生机制的较小光束。所提出的设计方法是从以前的大规模实验和非线性反应历史分析开发的。然而,研究到目日期中使用的各种支撑尺寸和框架几何形状是有限的。因此,使用非线性分析进行两项研究,以考虑可能影响地震性能的实用设计参数。首先,在静态循环载荷下,在三层雪佛龙SCBF上进行了大型参数研究。其次,不同的方法用于为西雅图,WA的网站设计典型的三层雪佛龙SCBF建筑物,然后使用代表2%/ 50年危害水平的地震进行反应历史分析。这些研究表明,由所提出的方法设计的低层建筑与通过常规设计方法设计的那些,以及以前的研究相比,抗震性能相等或改善,他们有助于在实践中支持未来使用所提出的方法。 (c)2021 elestvier有限公司保留所有权利。

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