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Numerical Study on Seismic Behavior of Composite Shear Walls with Steel-Encased Profiles Subjected to Different Axial Load

机译:具有不同轴向载荷的钢包装型材的复合剪力墙抗震性能的数值研究

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摘要

Shear walls are lateral load-resisting systems that provide lateral strength and stiffness in order to reduce the horizontal sway of a building. Over recent years, composite shear walls with steel-encased profiles (CSRCWs) have attracted increasing attention. This paper aims to numerically investigate the impact of axial loads on the seismic behavior of shear walls. Numerical modeling was carried out via OpenSees. Five composite shear walls with different shapes of steel-encased profile and one typical reinforced concrete (RC) shear wall subjected to lateral cyclic displacements and different levels of axial load in the range of 10%-40% of axial load capacity were investigated. The findings revealed that increasing the axial compressive load ratio has a negative effect on the seismic behavior of shear walls. In addition, the results showed that shear walls with steel-encased profiles have more flexibility, stiffness, and energy dissipation compared with typical RC shear walls under the same axial load.
机译:剪切墙是横向载荷系统,其提供横向强度和刚度,以减少建筑物的水平摇摆。近年来,具有钢包装型材(CSRCWS)的复合剪力墙引起了不断的关注。本文旨在数值研究轴向载荷对剪力墙抗震性能的影响。数值建模通过开放式进行。研究了五种具有不同形状的钢包装型材的复合剪力墙和一个经过横向循环位移的一个典型的钢筋混凝土(RC)剪切壁,并在10%-40%的轴向承载能力的范围内进行了不同的轴向载荷。结果表明,增加轴向压缩载荷比对剪力墙的地震行为具有负面影响。此外,结果表明,与相同轴向载荷的典型RC剪切壁相比,具有钢包装型材的剪力壁具有更大的柔韧性,刚度和能量耗散。

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