Performance of Reinforced Concrete Shear Wall In Dual Structural System: A Review

Rajan Suwal, Aakarsha Khawas
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Abstract

A dual structural system consists of a momentresisting frame, and vertical reinforced concrete walls called shear walls. Shear walls used in tall buildings are generally located around elevator cores and stairwells. Many possibilities exist in a tall building regarding the location, shape, number, and arrangement of shear walls. Shear walls generally start at the foundation level and are continuous throughout the building height. Their thickness can be as low as 150mm in lowrise to medium-rise buildings or as high as 400mm in high-rise buildings. To establish an effective lateral force-resisting system, the shear walls are located in preferable positions in a structure that minimizes lateral displacements. The shear walls are situated in ideal locations to be symmetrical and torsional effects get reduced. Based on the comparison of various literature regarding the shear wall positions, the shear wall placement at the core or the corners of the structure symmetrically gives the best performance to reduce displacement and story drift. Also, lateral displacement diminishes when the shear wall’s thickness increases.
双结构体系中钢筋混凝土剪力墙性能研究进展
双重结构系统由抗力矩框架和垂直钢筋混凝土墙组成,称为剪力墙。高层建筑中使用的剪力墙一般位于电梯芯和楼梯间周围。在高层建筑中,剪力墙的位置、形状、数量和排列存在许多可能性。剪力墙一般从基础水平开始,在整个建筑高度连续。低层至中层建筑的厚度可低至150mm,高层建筑的厚度可高至400mm。为了建立一个有效的抗侧力系统,剪力墙位于结构中的最佳位置,以最大限度地减少侧移。剪力墙处于理想的对称位置,扭转效应减小。通过对各种剪力墙位置的文献比较,剪力墙对称布置在结构的核心或角落处,以减小位移和层间漂移的效果最好。横向位移随剪力墙厚度的增加而减小。
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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