Seismic Performance of Composite Steel Plate Shear Walls(CSPSW) Containing Two Openings

Arman Mamazizi, S. Ahmed
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引用次数: 1

Abstract

The use of shear walls with various materials, including reinforced concrete, steel, and composite as a lateral-force-resisting system is common in high- and low-rise buildings. Until 30 years ago, reinforced concrete shear walls were widely used in buildings. During the last two decades, however, extensive studies and researches have been done on determining the performance of steel and composite steel plate shear walls, which has led to the increase in the use of these innovative systems in new structures and retrofitting of existing buildings. In this study, the performance of composite steel plate shear walls (CSPSW) with two openings was numerically studied. The numerical results were compared with the previous experimental studies. To evaluate the effects of openings in the performance of CSPSW, various numerical specimens were modeled. The studied parameter was the position of openings, including the upper, middle, and lower of the shear walls with 10, 20, 30, and 40% of the entire walls’ area. The results indicated that specimens without openings had the highest initial stiffness as the CSPSW with two openings had the lowest. As the area of the openings decreased, the initial stiffness and ultimate shear capacity increased. In addition, as the area of openings increased, the ultimate shear capacity decreased. Also, the results showed that the position of openings had a negligible effect on the behavior of the CSPSW. The concrete layer in CSPSW played an essential role in increasing the ultimate shear capacity of the CSPSW.
双开口组合钢板剪力墙抗震性能研究
使用各种材料的剪力墙,包括钢筋混凝土、钢和复合材料作为横向抗力系统,在高层和低层建筑中很常见。直到30年前,钢筋混凝土剪力墙才被广泛应用于建筑中。然而,在过去的二十年中,在确定钢和复合钢板剪力墙的性能方面进行了广泛的研究和研究,这导致了在新结构和现有建筑改造中使用这些创新系统的增加。本文对双开口组合钢板剪力墙的受力性能进行了数值研究。数值计算结果与前人的实验研究结果进行了比较。为了评估开口对CSPSW性能的影响,对不同的数值试样进行了建模。研究的参数是开口的位置,包括剪力墙的上、中、下,占整个墙面积的10%、20%、30%和40%。结果表明:无开口试件的初始刚度最高,有两个开口试件的初始刚度最低;随着孔洞面积的减小,初始刚度和极限抗剪能力增大。随着开口面积的增大,极限抗剪能力减小。此外,结果表明,开口位置对CSPSW行为的影响可以忽略不计。混凝土层对提高CSPSW的极限抗剪能力起着至关重要的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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