Seismic behavior of reinforced concrete buildings using chained masonry walls randomly located

IF 0.2 Q4 ENGINEERING, MULTIDISCIPLINARY
Abdelkader Nour, A. Benanane, H. Varum
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Abstract

The widespread use of masonry infill walls in the most prone zones to earthquakes, for the execution of multistoried reinforced concrete buildings, as well as the recorded damage caused by earthquakes, have forced us to study their influence on the seismic behavior of these buildings. The distribution of masonry infill walls in these buildings is mainly related to their architectural requirements. The purpose of this article is to assess the influence of the various locations of chained masonry walls, which represent a particular type of masonry infill walls without gaps, on multistoried reinforced concrete buildings. This variation has been studied using the SAP finite element software, by the pushover method, analyzing several two-dimensional multistoried reinforced concrete frames infilled by double-leaf hollow brick walls. The proposed frames have been analyzed by varying the position of the chained masonry walls, based on the seismic criteria of the period, elastic base shear, elastic lateral displacement, ultimate base shear, and initial stiffness. The results were compared according to the above criteria. After comparing the results, it is very clear that the position of the masonry walls has a great influence on the seismic response of the reinforced concrete frames. Therefore, it is very important to take into account the position of the infill in the design phase.
钢筋混凝土建筑随机设置锚链砌体墙的抗震性能
在最容易发生地震的地区,为了建造多层钢筋混凝土建筑,砌体填充墙的广泛使用,以及地震造成的记录破坏,迫使我们研究它们对这些建筑地震行为的影响。砌体填充墙在这些建筑中的分布主要与其建筑要求有关。本文的目的是评估链式砌体墙的不同位置对多层钢筋混凝土建筑的影响,链式砌体墙代表了一种特殊类型的无间隙砌体填充墙。利用SAP有限元软件,采用推覆法对若干双层空心砖墙填充的二维多层钢筋混凝土框架进行了研究。根据周期、弹性基础剪力、弹性侧向位移、极限基础剪力和初始刚度的地震准则,通过改变锚链砌体墙的位置来分析建议的框架。根据上述标准对结果进行比较。结果表明,砌体墙的位置对钢筋混凝土框架的地震反应有很大的影响。因此,在设计阶段考虑填料的位置是非常重要的。
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