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Near-collapse behavior of steel buildings with non-ductile concentrically braced frames

机译:具有非延性同心支撑框架的钢结构建筑物的倒塌行为

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Inherent resistance to collapse has been observed in steel buildings with non-ductile concentrically braced frames (CBFs) during past major earthquakes. Understanding of the fundamental characteristics of near-collapse behavior of such buildings will help reveal seismic performance of non-ductile steel structures in existing buildings across the US, and lead to an efficient seismic retrofit of those in seismic zones. This paper presents a seismic evaluation of typical steel buildings using non-ductile CBFs as lateral load resisting structures with focus on their near-collapse behavior, based on the incremental dynamic analysis. The buildings with non-ductile CBFs were found to be fully operational up to 0.5% story drift ratio response with or without gravity frames participating in lateral-load-resisting system. However, the life safety and collapse prevention of the buildings were significantly improved by actually participating lateral-load-resisting systems including CBFs, steel gravity frames and concrete slabs. Furthermore, the post-damage response of the building was more significantly influenced by gravity frames as the damages progressed from its first brace fracture to near collapse, and the participation of the gravity frames had much more impact on the near collapse behavior of a taller building than that of a low-rise building. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在过去的大地震中,在具有非延性同心支撑框架(CBF)的钢结构建筑中观察到了固有的抗倒塌能力。了解此类建筑物的近崩溃行为的基本特征将有助于揭示全美国现有建筑物中非延性钢结构的抗震性能,并导致对地震区域中的那些进行有效的抗震改造。本文基于增量动力分析,介绍了使用非延性CBF作为侧向抗力结构的典型钢结构房屋的抗震评估,重点是其近塌陷行为。发现具有非延性CBF的建筑物在有或没有重力框架参与抗侧向荷载系统的情况下,可以达到高达0.5%的楼层漂移率响应,并且可以完全运行。但是,通过实际参与的抗侧向载荷系统(包括CBF,钢制重力框架和混凝土板),大大改善了建筑物的生命安全和防倒塌能力。此外,建筑物的损坏后响应受重力框架的影响更大,因为破坏从其第一次支撑骨折发展到接近倒塌,而重力框架的参与对较高建筑物的接近倒塌行为影响更大。比一幢低层建筑要高。 (C)2015 Elsevier Ltd.保留所有权利。

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