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Experimental and numerical investigation of cyclic response of a glass curtain wall for seismic performance assessment

机译:评估抗震性能的玻璃幕墙循环响应的实验和数值研究

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In contemporary architecture, the use of the glass curtain walls is increasingly growing. However, after experiencing earthquake motions, they have sometime shown damage, which might cause considerable life-safety hazards for pedestrian and occupants of buildings, as well as significant economic losses to owners, due to downtime and cost for repairing. This work aims to investigate the behaviour of such systems under seismic loads, so to contribute to the enhancement of the capability of designers and manufacturers in dealing with seismic vulnerability of glazed systems and reducing earthquake induced losses. This study shows cyclic experimental tests performed at the Construction Technologies Institute (ITC) of the Italian National Research Council (CNR) for seismic performance assessment of a full-scale aluminium-glass facade, designed and manufactured according to a standard technology for the European market. A non-linear finite element model has been calibrated according to experimental results. The aim is understanding further aspects of the lateral behaviour of these non-structural elements and also giving useful information for numerical simulations of similar facades, that in the next future should be performed even in the absence of experimental data. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在当代建筑中,玻璃幕墙的使用越来越多。但是,在经历地震运动后,它们有时会受到破坏,由于停机时间和维修成本,可能会对建筑物的行人和居住者造成相当大的生命安全危害,并对业主造成重大经济损失。这项工作旨在调查此类系统在地震载荷下的行为,从而有助于提高设计人员和制造商处理玻璃系统的地震易损性并减少地震引起的损失的能力。这项研究显示了在意大利国家研究委员会(CNR)的建筑技术研究所(ITC)上进行的循环实验测试,用于评估按欧洲市场标准技术设计和制造的全尺寸铝玻璃幕墙的抗震性能。 。非线性有限元模型已经根据实验结果进行了校准。目的是了解这些非结构性元素的横向行为的其他方面,并为相似立面的数值模拟提供有用的信息,即使在没有实验数据的情况下,也应在未来进行。 (C)2018 Elsevier Ltd.保留所有权利。

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