ANALYSIS OF TIME-VARYING SEISMIC VULNERABILITY OF PRESTRESSED SEGMENT PIER CONSIDERING CHLORIDE ION CORROSION

被引:0
|
作者
Xu J.-L. [1 ]
Zhang Y.-Y. [1 ]
Zuo X.-B. [1 ]
机构
[1] School of Safety Science and Engineering, Nanjing University of Science and Technology, Nanjing
来源
关键词
chloride ion corrosion; incremental dynamic analysis; prestressed segment pier; time-varying vulnerability; uneven corrosion;
D O I
10.6052/j.issn.1000-4750.2023.05.S012
中图分类号
学科分类号
摘要
Based on the chloride ion diffusion characteristics, the time-varying corrosion patterns of prestressed segment pier and its seismic vulnerability during the whole life cycle are studied in this paper. On the basis of the research background of an offshore bridge structure, a prestressed segment pier with equivalent seismic capability is designed based on the original pier, and the numerical simulation is carried out using OpenSEES finite element software. The transport characteristics of chloride ion in the adhesive joint interface of precast segment bridge are applied to prestressed segment piers, and both uniform corrosion and pitting corrosion of various reinforcement materials are considered. The Pushover analysis method and incremental dynamic analysis method are used successively to calculate and evaluate the time-varying seismic performance and seismic demand of eroded prestressed segment piers. The results show that: firstly, the chloride ion transport characteristics in the joint interface zone change the time-varying corrosion state at different pier heights, resulting in uneven corrosion morphology along pier heights; secondly, considering uniform corrosion and pitting corrosion, the deterioration rate of the steel bar is obviously higher than that of the longitudinal bar inside the monolithic cast-in-place pier; finally, the seismic vulnerabilities of prestressed segment piers and monolithic cast-in-place piers present different characteristics during the whole life cycle of the bridge. © 2024 Tsinghua University. All rights reserved.
引用
收藏
页码:74 / 82
页数:8
相关论文
共 23 条
  • [1] GU Yin, DAI Xiangdong, LI Pan, Et al., Research on seismic performance of reinforced concrete bridge piers considering influence of nonuniform corrosion, Engineering Mechanics, 39, 4, pp. 113-122, (2022)
  • [2] XIAO Xiong, WANG Zeyu, LI Quanwang, Et al., Bayesian model updating based on structural reliability method: case study for chloride-induced durability analysis, Engineering Mechanics, 39, pp. 336-341, (2022)
  • [3] LI Lifeng, WU Wenpeng, HU Sicong, Et al., Time-dependent seismic fragility analysis of high pier bridge based on chloride ion induced corrosion, Engineering Mechanics, 33, 1, pp. 163-170, (2016)
  • [4] HU Sicong, Seismic fragility assessment and seismic retrofit scheme of bridges considering chloride attack, (2017)
  • [5] CUI F K, ZHANG H N, GHOSN M, Et al., Seismic fragility analysis of deteriorating RC bridge substructures subject to marine chloride-induced corrosion [J], Engineering Structures, 155, pp. 61-72, (2018)
  • [6] ASGHSHAHR M S, RAHAI A., Seismic assessment of reinforced concrete bridge under chloride-induced corrosion, International Journal of Civil Engineering, 16, 6, pp. 681-693, (2018)
  • [7] SIEMES A J, GEHLEN C, LINDVALL A, Et al., Statistical quantification of the variables in the limit state functions, (1999)
  • [8] THOMAS M D A, BENTZ E C., Life-365<sup>TM</sup> service life prediction Model<sup>TM</sup> and computer program for predicting the service life and life-cycle costs of reinforced concrete exposed to chlorides, (2002)
  • [9] LI Chao, LI Hongnan, Life-cycle aseismic performance evaluation of offshore bridge structures considering chloride ions corrosion effect, Journal of Vibration and Shock, 33, 11, pp. 70-77, (2014)
  • [10] JIANG Xin, The research of prestressed concrete bridge durability environment division in coastal environment, (2013)