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Seismic Performance of Outrigger-Braced System Based on Finite Element and Component-Mode Synthesis Methods

机译:基于有限元和成分合成方法的突出突出系统的地震性能

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摘要

Determining the optimum location of outrigger-belt truss system is of the most important challenges in tall structures. In this paper, two numerical methods, finite element method (FEM) and component-mode synthesis (CMS), are evaluated to determine the seismic performance of two buildings with different heights: one with 20 stories and the other with 30 stories. To find the optimum location of the outrigger, seismic performance of 2D outrigger-braced buildings in terms of inter-story drift ratio, roof displacement, base shear, and base moment is investigated. It is concluded that CMS as a model reduction method is very effective and useful in reducing the required analysis time as well as having good concordance with FEM results. The seismic responses of the two buildings change significantly as the outrigger location changes from the first to the last story. The accuracy of the results is verified through the OpenSees program. Results show that the component-mode synthesis method is able to reduce the analysis time significantly, and also the efficiency and impotence of this method are more obvious as degrees of freedom are increased. In addition, placing the outrigger system at 0.6Hto 0.8Hof the total height of the building improves the seismic performance of the structure.
机译:确定突出带桁架系统的最佳位置是高层结构中最重要的挑战。在本文中,评估了两种数值方法,有限元方法(FEM)和组分 - 模式合成(CMS),以确定两个具有不同高度的两个建筑物的地震性能:一个有20个故事,另一个有30个故事。为了找到突破的最佳位置,研究了2D突破支撑建筑物的地震性能,在故事间漂移率,屋顶位移,基剪和基片。得出结论,CMS作为模型还原方法非常有效,可用于减少所需的分析时间以及对有关FEM结果的良好一致性。两座建筑物的地震响应随着突破位置从第一个故事的变化而变化显着变化。通过Opensees计划验证了结果的准确性。结果表明,组分模式合成方法能够显着降低分析时间,并且这种方法的效率和阳痿也更为明显,因为自由度增加。此外,将突出系统放置在0.6Hto 0.8HOF时,建筑物的总高度提高了结构的地震性能。

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