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Seismic behaviour of multi-storey gravity-controlled rocking braced-frame buildings including floor vertical response

机译:多层重力控制摇动框架建筑物的地震行为,包括地板垂直响应

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Gravity-controlled rocking braced frames (G-CBRFs) are cost-effective low-damage self-centring lateral force resisting systems that allow the reduction of the seismic force demands in structures subjected to earthquakes, while relying only on the gravity loads they carry to ensure self-centring. Due to column uplift, significant masses are mobilized, thus activating vertical fundamental modes of vibration that affect the overall seismic behaviour of the structures. This article presents an examination of the seismic response of G-CBRF structures, including the response of the roof and floor framing systems. Twenty-two buildings were designed for this study, with various combinations of building heights (2-, 4-, and 8-storeys), building locations (eastern and western Canada), site classes (soil C and E), and location of the braced frame within the building (interior or exterior column lines). For each design, two framing configurations were studied, with secondary beams parallel or perpendicular to the braced frames. Non-linear response history analyses were performed using representative ground motions selected and scaled according to the National Building Code of Canada requirements. Effects of the vertical component of the ground motions and energy dissipated through friction in beam-to-column connections were also of focus. Incremental dynamic analyses were performed to generate fragility curves for collapse due to overturning of the studied structures. The results show that peak drifts can be accurately predicted. Peak axial loads in frame members are increased due to the vertical inertia forces induced upon rocking. The fragility curves show that acceptable margins against collapse by overturning is achieved for G-CRBFs.(c) 2021 Elsevier Ltd. All rights reserved.
机译:重力控制的摇摆支撑框架(G-CBRF)是具有成本效益的低损伤自定心横向力抵抗系统,允许降低受地震的结构中的地震力要求,同时仅依赖于他们携带的重力负荷确保自定心。由于柱上隆起,动员了大量质量,从而激活影响结构整体地震行为的垂直振动模式。本文提出了对G-CBRF结构的地震反应的检查,包括屋顶和地板框架系统的响应。为本研究设计了二十两栋建筑,建筑高度(2-,4-和8层),建筑物地点(加拿大和西部),网站类(土壤C和E)以及位置的各种组合建筑物内的支撑框架(内部或外部柱线)。对于每个设计,研究了两个框架配置,其中次级光束平行或垂直于支撑框架。使用选定的地面运动进行非线性响应历史分析,并根据加拿大要求的国家建筑守则进行扩展。地面运动的垂直分量和通过摩擦射线到柱连接中的能量耗散的效果也是焦点。进行增量动态分析以产生由于所研究的结构的推翻而导致的脆弱曲线。结果表明,可以准确地预测峰值漂移。由于在摇摆时引起的垂直惯性力,框架构件中的峰值轴向载荷增加。脆弱曲线表明,通过推翻的倒塌的可接受的边缘是针对G-CRBFS实现的。(c)2021 elestvier有限公司保留所有权利。

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