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Seismic retrofit of gravity load designed RC buildings using external steel concentric bracing systems

机译:重力载荷的地震改造设计了使用外部钢同心支撑系统设计的RC建筑物

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This paper discusses the seismic vulnerability of Reinforced Concrete (RC) buildings designed to gravity loads only, which are representative of the Italian building stock mainly erected between '70s and '80s, and investigates the use of external steel concentric bracing systems to upgrade their seismic performance. A case study building has been selected and designed according to the codes and the current practice in force at the time of construction. The seismic performance has been evaluated through the so-called N2 method in the format of the Capacity Spectrum Method applied to three different models of the building, namely bare frame, full infilled frame and pilotis frame, to highlight the role of the infill walls arrangement. The three models have been retrofitted with the external bracing systems designed with an adopted rational methodology. The external arrangement of the bracing systems has been chosen in order to both minimize the impact on the existing building and avoid the local interaction between the RC structural elements and the steel bracings, as well as the additional loads on the existing foundations. The results have shown the strong role of the infills in the structural behaviour of the existing building and the efficiency of the external steel bracing systems as retrofitting technique of existing RC buildings.
机译:本文讨论了钢筋混凝土(RC)建筑物的地震脆弱性,仅为重力负载,这是意大利建筑股票的主要竖立在'70年代和'80年代之间,并调查外钢同心支撑系统升级其地震升级表现。根据代码和当前在施工时生效的案例研究建筑。通过所谓的N2方法评估地震性能,以容量谱法的格式应用于三种不同型号的建筑物,即裸露的框架,完全缺陷的框架和飞行框架,以突出填充墙壁排列的作用。这三种型号已经用外部支撑系统进行了改造,设计了采用的合理方法。已经选择了支撑系统的外部布置,以使现有建筑物的影响最小化,并避免RC结构元件和钢支撑之间的局部相互作用,以及现有基础上的额外载荷。结果表明,填充物在现有建筑物的结构行为中的强大作用以及外钢支撑系统的效率作为现有RC建筑的改造技术。

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