首页> 外文期刊>Iranian Journal of Science and Technology, Transactions of Civil Engineering >Analysis of Coupled Steel Plate Shear Walls with Outrigger System for Tall Buildings
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Analysis of Coupled Steel Plate Shear Walls with Outrigger System for Tall Buildings

机译:高层建筑中带有支腿系统的钢板剪力墙耦合分析

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Steel plate shear wall (SPSW) had shown a good performance against lateral load in laboratories and last earthquakes. Despite its high shear stiffness, its low bending stiffness is the main concern about this system. Outriggers in conjunction with coupled SPSW that is investigated in this paper form an effective system with a high shear and bending stiffness as well as great strength. To overcome determining the optimal location of outrigger in the system, equations governing the behavior of the proposed combined system are obtained. The results of the proposed equations are in good agreement with the results of the finite element model. The findings indicate that the location of an outrigger is much more important than its rigidity. Moreover, this study shows that column rigidity has a minor effect on controlling the lateral deformations. In addition, by increasing the rigidity of beams, the lateral drift of a building structure diminishes.
机译:钢板剪力墙(SPSW)在实验室和上一次地震中表现出良好的抗侧向载荷性能。尽管其剪切刚度高,但其弯曲刚度却低是该系统的主要问题。本文研究的支腿与耦合的SPSW结合形成了一个有效的系统,该系统具有较高的剪切和弯曲刚度以及较高的强度。为了克服确定支腿在系统中的最佳位置的问题,获得了控制拟议组合系统行为的方程。所提出方程的结果与有限元模型的结果非常吻合。研究结果表明,支腿的位置比其刚性重要得多。此外,这项研究表明,圆柱刚度对控制横向变形的影响较小。另外,通过增加梁的刚度,建筑结构的横向偏移减小。

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