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Estimating Natural Periods of Steel Plate Shear Wall Frames

机译:估算钢板剪力墙框架的自然周期

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摘要

A steel plate shear wall (SPSW) with thin, unstiffened web plates is one type of seismic lateral force-resisting system that is gaining popularity. SPSWs are used in low to midrise building construction typically with two or more frames in each orthogonal direction to resist seismic loading combined with gravity framing. The SPSWs therefore control the lateral force response of the building and the building's natural periods of vibration. For design of any seismic load-resisting system, an estimation of the building's first-mode period is necessary to calculate seismic loads and estimate resulting frame drift. This paper presents a method for estimating the first three natural periods of a SPSW with nonuniform properties along its height, accounting for both shear and flexural deformations of the system. The proposed method approximates the SPSW frame as shear and flexural systems separately to determine corresponding frequencies and then combines these frequencies using Dunkerley's equation. A comparison of periods estimated using the approximate method with those obtained from modal analysis of detailed finite-element models suggests that the proposed method is appropriate for estimating the first-mode period of SPSW frames. The proposed method could be valuable for refining the seismic design of these frames or for verifying the results of large, complex steel plate shear wall building models.
机译:具有薄的,未加劲的腹板的钢板剪力墙(SPSW)是一种越来越受欢迎的抗侧向地震力系统。 SPSW用于低至中层建筑结构中,通常在每个正交方向上具有两个或更多框架,以抵抗地震荷载和重力框架。因此,SPSW控制建筑物的侧向力响应以及建筑物的自然振动周期。对于任何抗地震荷载系统的设计,都需要对建筑物的第一模式周期进行估算,以计算地震荷载并估算最终的框架漂移。本文提出了一种估计SPSW的前三个自然周期的方法,该方法沿其高度具有不均匀的特性,同时考虑了系统的剪切变形和弯曲变形。所提出的方法分别将SPSW框架近似为剪切和挠曲系统,以确定相应的频率,然后使用Dunkerley方程将这些频率组合起来。使用近似方法估计的周期与通过详细有限元模型的模态分析获得的周期的比较表明,所提出的方法适用于估计SPSW帧的第一模式周期。所提出的方法对于改进这些框架的抗震设计或验证大型,复杂的钢板剪力墙建筑模型的结果可能是有价值的。

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