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Seismic analysis and evaluation of SPSW structural systems by the ET method

机译:ET方法对SPSW结构体系的地震分析与评价。

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The steel plate shear wall (SPSW) system can provide high lateral force resistance and energy dissipation capacity against seismic loads. Due to the complexity of panel action and wall-frame interaction, developing a high-efficiency analysis method is crucial for the seismic analysis and evaluation of structural systems. This paper explores the feasibility of using endurance time (ET) method to predict the seismic response of high-rise SPSW systems with square concrete-filled tubular columns (SPSW-CFI') with a reduced computational effort. To this end, two high-rise structures with 10 and 20 stories were designed and selected as the prototype structures. The nonlinear time history analysis results under 18 real ground motion records were employed as the basis for comparison. Based on the observations of validation, the global seismic demands and noncumulative response distribution were compared. The scaling method of ET accelerograms to be consistent with the accumulation-related seismic demands was developed based on the compatibility of strong-motion duration. The investigation results indicate ET method is able to efficiently predict the response parameters with a remarkable reduction of computation cost. (C) 2018 Elsevier Ltd. All rights reserved.
机译:钢板剪力墙(SPSW)系统可提供较高的抗侧向力和抵抗地震载荷的能量消散能力。由于面板作用和墙框架相互作用的复杂性,开发高效的分析方法对于结构系统的地震分析和评估至关重要。本文探讨了用耐久时间(ET)方法来预测带有方形混凝土填充管柱(SPSW-CFI')的高层SPSW系统的地震响应的可行性,同时减少了计算量。为此,设计并选择了两个有10层和20层的高层建筑作为原型结构。以18个真实地震动记录下的非线性时程分析结果为基础进行比较。基于验证的观察结果,比较了全球地震需求和非累积响应分布。基于强运动持续时间的相容性,开发了与累积相关地震需求相一致的ET加速度图缩放方法。研究结果表明,ET方法能够有效地预测响应参数,并且显着降低了计算成本。 (C)2018 Elsevier Ltd.保留所有权利。

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