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Published: Građevinar 75 (2023) 10
Paper type: Scientific research paper
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Study on seismic dissipation mechanism of inter-story isolation structure based on phase

Shangrong Zhang, Chi Zhang, Xue Ju, Yang Xiong

Abstract

Owing to the existence of the isolation layer, a phase lag phenomenon occurs between the superstructure and substructure of a story isolation structure. This phenomenon causes a phase difference between the superstructure and substructure; furthermore, the generated phase difference has a significant impact on the structural damping effect. To study this effect, we established a two-mass model of an inter-story isolated structure, derived the phase difference formula, analysed the impact of the phase difference on the damping effect of the modelled inter-story isolated structure and obtained the optimal phase difference to achieve the best damping effect; in addition, we combined the principle of minimum base shear and optimal phase difference to optimise the damping of the structural isolation layer with different mass ratios. Based on the optimal damping, an energy balance equation was established from the viewpoint of energy. The energy transfer and consumption under different phase differences were analysed to further discuss the relationship between phase differences and the damping effect of the inter-story isolated structure.

Keywords
inter-story isolated structure, phase lag, phase difference, energy isolation mechanism

HOW TO CITE THIS ARTICLE:

Zhang, S., Zhang, C., Ju, X., Xiong, Y.: Study on seismic dissipation mechanism of inter-story isolation structure based on phase, GRAĐEVINAR, 75 (2023) 10, pp. 969-978, doi: https://doi.org/10.14256/JCE.3643.2022

OR:

Zhang, S., Zhang, C., Ju, X., Xiong, Y. (2023). Study on seismic dissipation mechanism of inter-story isolation structure based on phase, GRAĐEVINAR, 75 (10), 969-978, doi: https://doi.org/10.14256/JCE.3643.2022

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This paper is licensed under a Creative Commons Attribution 4.0 International License.
Authors:
3643 A1 Shangrong Zhang WEB
Shangrong Zhang
Ningxia University, China
Faculty of Civil and Hydraulic Engineering
c94e943519a2081142e4456f3e9a28d2
Chi Zhang
Ningxia University, China
Faculty of Civil and Hydraulic Engineering
3643 A3 Xue Ju WEB
Xue Ju
Ningxia University, China
Faculty of Civil and Hydraulic Engineering
3643 A4 Yang Xiong WEB
Yang Xiong
Ningxia University, China
Faculty of Civil and Hydraulic Engineering