Seismic resilient design of rocking tall bridge piers using inerter-based systems

被引:31
|
作者
Chen, Xu [1 ,2 ]
De Domenico, Dario [3 ]
LI, Chunxiang [4 ]
机构
[1] Tongji Univ, Dept Bridge Engn, Shanghai 200092, Peoples R China
[2] Tohoku Univ, Int Res Inst Disaster Sci, Sendai 9808576, Japan
[3] Univ Messina, Dept Engn, I-98166 Messina, Italy
[4] Shanghai Univ, Sch Mech & Engn Sci, Dept Civil Engn, Shanghai 200444, Peoples R China
基金
中国国家自然科学基金; 日本学术振兴会;
关键词
Seismic resilient design; Seismic response; Rocking foundation; Tall bridge piers; Inerter system; TVMD; Dynamic stability; Seismic fragility analysis; OPTIMAL INTENSITY MEASURES; TUNED MASS DAMPER; FRAGILITY ASSESSMENT; RESPONSE ANALYSIS; HIGHWAY BRIDGES; RUBBER BEARINGS; BEHAVIOR; DEMAND; METHODOLOGY;
D O I
10.1016/j.engstruct.2023.115819
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Seismic resilient design of tall bridge piers with rocking foundation by using inerter-based systems is investigated in this work. A simplified model is developed in OpenSees to simulate the rocking bridge pier equipped with a tuned viscous mass damper (TVMD) system, wherein nonlinearity of the pier response is incorporated through a distributed-plasticity fiber-based section approach; the rocking behavior is simulated through elastic-no-tension spring elements located at the foundation interface of the pier as per FEMA 356 recommendations; an equivalent model comprising a rotational mass linked with the two terminals of the TVMD through appropriate constraint conditions is utilized for modeling the inerter-based system. Optimal design parameters of the TVMD are determined through an extensive parametric analysis, aiming to minimize the tilt angle of the bridge pier. The effectiveness of the selected design parameters of the TVMD on the seismic mitigation performance of rocking tall piers is then investigated numerically. Besides, guidelines are proposed for the design of TVMD parameters in engineering practice based on these analytical results. Nonlinear time-history analysis is conducted under both far-field and near-fault motions, followed by seismic fragility analysis for the overturning damage state, assuming the peak ground acceleration as intensity measure and the dimensionless tilt angle as the engineering demand parameter. The parametric analysis results show that the TVMD is less efficient for near-fault motions, due to reduced energy dissipation capacity caused by pulse-type feature. Additionally, the optimal parameters obtained from parametric analysis could be generalized to a higher number of seismic excitations, achieving a similar seismic performance, which indicates robustness of the TVMD. The TVMD is found able to reduce the tilt angle at the rocking interface especially during strong earthquake events, consequently increasing the overturning sta- bility of rocking foundations adopted for tall bridge piers.
引用
收藏
页数:16
相关论文
共 50 条
  • [21] Seismic Performance of an Underground Structure with an Inerter-Based Isolation System
    Chen, Qingjun
    Zhang, Luqi
    Zhang, Ruifu
    Pan, Chao
    [J]. STRUCTURAL CONTROL & HEALTH MONITORING, 2023, 2023
  • [22] Using Rocking Frequencies of Bridge Piers for Scour Monitoring
    Boujia, Nissrine
    Schmidt, Franziska
    Chevalier, Christophe
    Siegert, Dominique
    Van Bang, Damien Pham
    [J]. STRUCTURAL ENGINEERING INTERNATIONAL, 2021, 31 (02) : 286 - 294
  • [23] Design of tall bridge piers by ant colony optimization
    Martinez, Francisco J.
    Gonzalez-Vidosa, Fernando
    Hospitaler, Antonio
    Alcala, Julian
    [J]. ENGINEERING STRUCTURES, 2011, 33 (08) : 2320 - 2329
  • [24] Investigation of inerter-based suspension systems for heavy vehicles
    Soong, Ming Foong
    Ramli, Rahizar
    Saifizul, Ahmad Abdullah
    Goh, Kah Yin
    Long, Su Xian
    [J]. PLOS ONE, 2023, 18 (01):
  • [25] Experimental study and numerical simulation of inerter-based systems
    Zheng, Yi-Lin
    Li, Lu-Yu
    [J]. JOURNAL OF VIBRATION AND CONTROL, 2023, 29 (5-6) : 985 - 997
  • [26] Vertical seismic protection of structures with inerter-based negative stiffness absorbers
    Kalogerakou, Marina E.
    Kapasakalis, Konstantinos A.
    Antoniadis, Ioannis A.
    Sapountzakis, Evangelos J.
    [J]. BULLETIN OF EARTHQUAKE ENGINEERING, 2023, 21 (03) : 1439 - 1480
  • [27] Seismic assessment of relatively tall bridge piers retrofitted with concrete jacketing
    Wang, H
    Soma, T
    Hikosaka, H
    [J]. STRUCTURAL ENGINEERING AND MECHANICS, VOLS 1 AND 2, 1999, : 801 - 806
  • [28] Displacement-based aseismic design method for rocking bridge piers with posttensioned tendons
    Wang, Jun-Wen
    Zhang, Wei-Guang
    Li, Jian-Zhong
    [J]. Zhendong yu Chongji/Journal of Vibration and Shock, 2014, 33 (24): : 106 - 111
  • [29] Preface for the special issue on advances on inerter-based seismic protection of structures
    Agathoklis Giaralis
    Alexandros A Taflanidis
    [J]. Bulletin of Earthquake Engineering, 2023, 21 : 1355 - 1359
  • [30] Vertical seismic protection of structures with inerter-based negative stiffness absorbers
    Marina E. Kalogerakou
    Konstantinos A. Kapasakalis
    Ioannis A. Antoniadis
    Evangelos J. Sapountzakis
    [J]. Bulletin of Earthquake Engineering, 2023, 21 : 1439 - 1480