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Earthquake-induced collapse simulation of a super-tall mega-braced frame-core tube building

机译:地震引起的超高层巨型支撑框架式核心房屋倒塌模拟

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摘要

Research on earthquake-induced collapse simulation has a great practical significance for super-tall buildings. Although mega-braced frame-core tube buildings are one of the common high-rise structural systems in high seismic intensity regions, the failure mode and collapse mechanism of such a building under earthquake events are rarely studied. This paper thus aims to investigate the collapse behavior of a super-tall mega-braced frame-core tube building (H=550 m) to be built in China in the high risk seismic zone with the maximum spectral acceleration of 0.9 g (g represents the gravity acceleration). A finite element (FE) model of this building is constructed based on the fiber-beam and multi-layer shell models. The dynamic characteristics of the building are analyzed and the earthquake-induced collapse simulation is performed. Finally, the failure mode and mechanism of earthquake-induced collapse are discussed in some detail. This study will serve as a reference for the collapse-resistance design of super-tall buildings of similar type.
机译:地震倒塌模拟研究对于超高层建筑具有重要的现实意义。尽管巨型支撑框架芯管建筑物是高地震烈度区域中常见的高层结构系统之一,但很少研究这种建筑物在地震事件下的破坏模式和倒塌机理。因此,本文旨在研究在中国高风险地震带中拟建的超高层巨型支撑框架-核心管结构(H = 550 m)的倒塌行为,其最大频谱加速度为0.9 g(g重力加速度)。该建筑物的有限元(FE)模型是基于纤维束和多层壳模型构建的。分析建筑物的动态特性,并进行地震倒塌模拟。最后,详细讨论了地震倒塌的破坏模式和机理。此项研究将为同类超高层建筑的抗倒塌设计提供参考。

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