首页> 外文会议>International symposium on bridge and structural engineering;IABSE symposium on large structures and infrastructures for environmentally constrained and urbanised areas >A case study of a building in L’Aquila, Italy for evaluating the effects of masonry infills on the seismic behavior of r.c. frame structures
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A case study of a building in L’Aquila, Italy for evaluating the effects of masonry infills on the seismic behavior of r.c. frame structures

机译:以意大利拉奎拉(L'Aquila)的一幢建筑物为例,评估了砌体填充物对钢筋混凝土抗震性能的影响。框架结构

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It is known that the seismic response of a structural system is highly influenced, in addition to theearthquake input, by the dynamic characteristics of the system itself. It has been observed duringthe L’Aquila earthquake that some buildings have shown unexpected good performances. The aimof this paper is to understand why these structures, designed for accelerations lower than thoserecorded during the L’Aquila’s earthquake, have shown performances higher than the design ones.The attention is focused on a real case study of a reinforced concrete frame building structurelocated in L’Aquila. The paper investigates the role of the masonry infills which, before reachingtheir ultimate capacity, allows to avoid significant structural damage and excursion in the inelasticrange. The seismic behaviour of the examined building is studied within Performance BasedSeismic Design approach. In particular, by imposing the performance objectives, an “objectivescurve”, in the Force-Displacement diagram related to the mechanical characteristics of the structure,is obtained. Both the contribution of the columns and the masonry infills are considered in theevaluation of the Force-Displacement diagram. Then, time-history analyses are performed byapplying to the building under study recorded ground motions of the L’Aquila earthquake. A nonlinear model of the structure, and in particular of the masonry infill, is implemented for the analyses.The examined response quantities are bending moments and chord rotations of columns and beamsas well as forces and deformations of masonry infills. For comparison purposes two cases arestudied: the first is the bare frame, the second is the infilled frame. These analyses allow to identifythe effects of the masonry infills on the response of the case study.
机译:众所周知,除了地震输入外,结构系统的地震响应还受到系统本身的动态特性的影响。在拉奎拉(L'Aquila)地震期间,观察到一些建筑物表现出出乎意料的良好表现。本文的目的是要理解为什么这些设计的加速度低于拉奎拉地震记录的结构的性能要高于设计的结构。拉奎拉本文研究了砌体填充物的作用,这些填充物在达到其极限承载力之前,可以避免在非弹性范围内发生重大的结构破坏和偏移。在基于性能的抗震设计方法中研究了被检查建筑物的抗震性能。特别地,通过施加性能目标,在力-位移图中获得了与结构的机械特性有关的“目标曲线”。力-位移图的评估中考虑了柱的作用和砌体填充物的作用。然后,通过将所记录的拉奎拉地震的地震动应用于研究中的建筑物,进行时程分析。对结构,特别是砌体填充物的非线性模型进行了分析。检查的响应量是弯矩,柱和梁的弦旋转以及砌体填充物的力和变形。为了比较,研究了两种情况:第一种是裸露的框架,第二种是填充的框架。这些分析可以确定砌体填充物对案例研究的响应的影响。

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