Field Behavior of Integral Abutment Bridges under Thermal Loading

被引:17
|
作者
LaFave, James M. [1 ]
Brambila, Gabriela [2 ]
Kode, Utkarsh [1 ]
Liu, Gaoyu [1 ]
Fahnestock, Larry A. [1 ]
机构
[1] Univ Illinois, Dept Civil & Environm Engn, 205 N Mathews Ave, Urbana, IL 61801 USA
[2] Burns & McDonnell, 9400 Ward Pkwy, Kansas City, MO 64114 USA
关键词
Beams and girders;
D O I
10.1061/(ASCE)BE.1943-5592.0001677
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Integral abutment bridges (IABs) have become popular with departments of transportation throughout the United States due to their lower maintenance and construction costs and longer service life. Nevertheless, JAB design and construction vary widely across the country, and not all aspects of JAB behavior are fully understood. Research has previously been conducted on IABs, but primarily with a focus on substructure behavior. However, recent studies have shown that JAB superstructures may develop significant stresses, which warrant consideration in their design. The work reported herein addresses the need to better understand not only JAB substructure behavior but also superstructure behavior, with a goal of improving design and construction provisions for IABs. Two bridges were instrumented, with primary focus on superstructure behavior and more limited instrumentation of the substructure. Corresponding finite-element models were developed based on modeling techniques and findings from prior parametric studies. It was found that the JAB decks and girders (in the superstructure) and abutments and piles (in the substructure) generally show seasonal and even daily trends with respect to changes in temperature, with the exception of bottom-flange girder stresses that have wider variability not directly related to temperature change. Prior modeling assumptions regarding the rigidity of various JAB connections were also validated through the field monitoring data. (C) 2021 American Society of Civil Engineers.
引用
收藏
页数:16
相关论文
共 50 条
  • [31] Seismic Response of Integral Abutment Bridges
    Kozak, D. L.
    Luo, J.
    LaFave, J. M.
    Fahnestock, L. A.
    [J]. STRUCTURES CONGRESS 2017: BRIDGES AND TRANSPORTATION STRUCTURES, 2017, : 48 - 57
  • [32] Transition Slabs of Integral Abutment Bridges
    Dreier, Damien
    Burdet, Olivier
    Muttoni, Aurelio
    [J]. STRUCTURAL ENGINEERING INTERNATIONAL, 2011, 21 (02) : 144 - 150
  • [33] Rigidity of abutments in integral abutment bridges
    Khodair, Yasser A.
    Hassiotis, Sophia
    [J]. STRUCTURE AND INFRASTRUCTURE ENGINEERING, 2013, 9 (02) : 151 - 160
  • [34] Integral Abutment Bridge behavior under uncertain thermal and time-dependent load
    Kim, WooSeok
    Laman, Jeffrey A.
    [J]. STRUCTURAL ENGINEERING AND MECHANICS, 2013, 46 (01) : 53 - 73
  • [35] Parametric Studies on Seismic Behavior of Integral Abutment Steel Bridges Considering SSI
    Zhao, Q.
    Dong, S.
    Qi, Z.
    Chen, B. C.
    [J]. MAINTENANCE, SAFETY, RISK, MANAGEMENT AND LIFE-CYCLE PERFORMANCE OF BRIDGES, 2018, : 2173 - 2180
  • [36] FINNISH FIELD TESTS ON SOIL-STRUCTURE INTERACTION OF INTEGRAL ABUTMENT BRIDGES
    Kerokoski, Olli
    [J]. 4TH INTERNATIONAL SYMPOSIUM ON LIFETIME ENGINEERING OF CIVIL INFRASTRUCTURE, 2009, : 167 - 174
  • [37] Numerical analysis method for long-term behavior of integral abutment bridges
    Kim, WooSeok
    Laman, Jeffrey A.
    [J]. ENGINEERING STRUCTURES, 2010, 32 (08) : 2247 - 2257
  • [38] NONLINEAR-ANALYSIS OF INTEGRAL ABUTMENT BRIDGES
    GREIMANN, LF
    YANG, PS
    WOLDETINSAE, AM
    [J]. JOURNAL OF STRUCTURAL ENGINEERING, 1986, 112 (10) : 2263 - 2280
  • [39] Calibration and parametric investigation of integral abutment bridges
    Salman, Nassr N.
    Issa, Mohsen A.
    [J]. ENGINEERING STRUCTURES, 2021, 227
  • [40] Parametric study of concrete integral abutment bridges
    Huang, Jimin
    Shield, Carol K.
    French, Catherine E. W.
    [J]. JOURNAL OF BRIDGE ENGINEERING, 2008, 13 (05) : 511 - 526