Influence mechanism of the installation position of friction support on the dynamic characteristic of the subway station structure

ce/papers Pub Date : 2025-03-18 DOI:10.1002/cepa.3166
Xuechuan Han, Hongliang Wang, Wenting Bai
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引用次数: 0

Abstract

The aim of this research is to investigate the effect of friction pendulum isolator on dynamic performance of subway station structure. To this end, an actual bi-story, bi-span subway station structure is taken as the research object, a three-dimensional model considering the interaction effect between soil and subway station was proposed by using FEM software. Based on the FEM model, the seismic performance of the subway station structure with the friction pendulum bearings mounted on different positions was employed to elucidate the seismic isolation mechanism. It showed that: (1) The friction pendulum bearings can significantly reduce the relative displacement of the middle column and increase the anti-shear deformation capacity of the middle column. (2) The friction pendulum bearing can change the stress distribution of the subway station, and reduce the magnitude and concentration of stress of the columns in the isolation layer. (3) The friction pendulum bearings make the structure have more reasonable bearing capacity, as they can reduce the shear force and bending moment of the middle column significantly. It is suggested that the isolation bearing should be installed on the middle column of the ground floor of the station.

本研究旨在探讨摩擦摆式隔振器对地铁车站结构动态性能的影响。为此,以一个实际的双层双跨地铁站结构为研究对象,利用有限元软件提出了一个考虑土壤与地铁站之间相互作用效应的三维模型。在有限元模型的基础上,利用安装在不同位置的摩擦摆支座对地铁车站结构的抗震性能进行了分析,以阐明其隔震机理。结果表明(1)摩擦摆支座可显著减小中柱的相对位移,提高中柱的抗剪切变形能力。(2) 摩擦摆式支座可改变地铁站的应力分布,减小隔震层中立柱的应力大小和集中程度。(3) 摩擦摆式支座可显著降低中柱的剪力和弯矩,使结构具有更合理的承载能力。建议在车站底层的中柱上设置隔震支座。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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