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A shear wall element for nonlinear seismic analysis of super-tall buildings using OpenSees

机译:使用OpenSees对超高层建筑进行非线性地震分析的剪力墙单元

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摘要

Numerical simulation has increasingly become an effective method and powerful tool for performance-based earthquake engineering research. Amongst the existing research efforts, most numerical analyses were conducted using general-purpose commercial software, which to some extent limits in-depth investigations on specific topics with complicated nature. In consequence, this work develops a new shear wall element model and associated material constitutive models based on the open source finite element (FE) code OpenSees, in order to perform nonlinear seismic analyses of high-rise RC frame-core tube structures. A series of shear walls, a 141.8-m frame-core tube building and a super-tall building (the Shanghai Tower, with a height of 632 m) are simulated. The rationality and reliability of the proposed element model and analysis method are validated through comparison with the available experimental data as well as the analytical results of a well validated commercial FE code. The research outcome will assist in providing a useful reference and an effective tool for further numerical analysis of the seismic behavior of tall and super-tall buildings.
机译:数值模拟已越来越成为基于性能的地震工程研究的有效方法和强大工具。在现有的研究工作中,大多数数值分析都是使用通用商业软件进行的,这在一定程度上限制了对具有复杂性质的特定主题的深入研究。因此,这项工作基于开源有限元(FE)代码OpenSees开发了新的剪力墙单元模型和相关的材料本构模型,以便对高层RC框架-芯管结构进行非线性地震分析。模拟了一系列剪力墙,141.8米的框架芯管建筑和超高层建筑(上海大厦,高度为632 m)。通过与可用的实验数据以及经过充分验证的商业有限元代码的分析结果进行比较,验证了所提出的元素模型和分析方法的合理性和可靠性。研究成果将为进一步对高层和超高层建筑的地震行为进行数值分析提供有用的参考和有效的工具。

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