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Ductility of a 60-Story Shearwall Frame-Belt Truss (Virtual Outrigger) Building

机译:60层剪力墙框架 - 带式桁架(虚拟支腿)建筑的延展性

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摘要

Researches have been conducted to study Shearwall-frame combined with belt truss as structural system (SFBT), in which the post-elastic behavior and ductility of this structural system are explored. A 60-story SFBT building, with a ductility set equal to 3.75 (value for fully ductile cantilever wall) is considered. The Elastic Response Spectrum used for design is taken from Zone 2 of Indonesian Seismic Map. Capacity design method according to Indonesian Concrete Code is employed. The seismic performance is analyzed using static non-linear push-over analysis and dynamic non-linear time-history analysis. Spectrum consistent ground motions of the May 18, 1940 El-Centro earthquake N-S components scaled to maximum accelerations of various return periods (50, 200, and 500 years) are used for analysis. The results of this study show that plastic hinges mainly developed in beams above the truss, columns below the truss, and bottom levels of the wall. The building shows no indication of structural instability.
机译:已经进行了研究,以剪力墙框架结合带桁架作为结构系统(SFBT),在其中探讨了该结构系统的后弹性行为和延性。考虑60层SFBT建筑物,其延展性设置为3.75(全延展性悬臂墙的值)。用于设计的弹性响应谱取自印度尼西亚地震图的2区。采用根据印尼混凝土规范的能力设计方法。使用静态非线性推覆分析和动态非线性时程分析来分析抗震性能。使用1940年5月18日El-Centro地震N-S分量的频谱一致的地震动进行缩放,以按各个返回期(50、200和500年)的最大加速度进行缩放。这项研究的结果表明,塑料铰链主要出现在桁架上方的梁,桁架下方的柱以及墙的底部高度中。该建筑物未显示出结构不稳定的迹象。

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