New openings in unreinforced masonry walls under in-plane loads: a numerical and experimental study

IF 1.2 Q3 CONSTRUCTION & BUILDING TECHNOLOGY
Mónica Y. Oña Vera, G. Metelli, J. Barros, G. Plizzari
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引用次数: 1

Abstract

Nowadays, existing masonry buildings are frequently modified to satisfy living demands. These modifications may require the addition of new windows or doors in walls of structural functionality. In engineering practice, such modifications are generally designed and verified for vertical loads while, for seismic loads, the changes in the walls' structural behaviour are not yet fully understood. Consequently, current design may incorrectly estimate the in-plane response of the perforated walls. This paper presents an evaluation of the effects of the introduction of new openings in masonry walls under in-plane loads by a numerical and experimental approach. Two parameters are considered for the numerical studies: opening size and eccentricity. The results show that the loss in stiffness and strength due to new openings are proportional to the opening area and that the eccentricity might change the wall response going from rocking to shear dominant behaviour, depending on the load direction.
面内荷载作用下未加筋砌体墙体新开口的数值与试验研究
如今,为了满足生活需求,人们经常对现有的砖石建筑进行改造。这些修改可能需要在具有结构功能的墙上添加新的窗或门。在工程实践中,此类修改通常针对垂直荷载进行设计和验证,而对于地震荷载,尚未完全了解墙体结构性能的变化。因此,当前的设计可能会错误地估计穿孔壁的平面内响应。本文通过数值和实验方法评估了在面内荷载作用下砌体墙中引入新开口的效果。数值研究考虑了两个参数:开口尺寸和偏心率。结果表明,新开孔造成的刚度和强度损失与开孔面积成正比,偏心率可能会根据荷载方向改变墙的响应,从摇摆变为剪切主导。
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来源期刊
International Journal of Masonry Research and Innovation
International Journal of Masonry Research and Innovation CONSTRUCTION & BUILDING TECHNOLOGY-
CiteScore
2.30
自引率
9.10%
发文量
52
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