Reliability-based evaluation of load carrying capacity for a composite box girder bridge

被引:11
|
作者
Kim, Hyun-Joong [1 ]
Kim, Ho-Kyung [1 ]
Park, Jun Yong [1 ]
机构
[1] Seoul Natl Univ, Dept Civil & Environm Engn, Seoul 151744, South Korea
关键词
load carrying capacity; rating factor; load resistance factor; reliability-based; evaluation; bridge; steel box girder;
D O I
10.1007/s12205-013-0603-7
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The load carrying capacity of a composite open-top steel box girder bridge was evaluated, based on a reliability-based method, and potential differences from conventional approaches were evaluated. A practical analysis model was utilized in evaluating the Rating Factor (RF) after verification with a rigorous full finite element analysis model with solid and plate elements. The accuracy of the analysis models was validated in terms of displacements and distribution factors through static loading tests. Dynamic effects were also estimated from the dynamic loading tests. The load factors, proposed for the purpose of evaluation based on recently accumulated statistical data, were utilized in evaluating RF. The RFs were evaluated for maximum positive flexure, negative flexure, and shear regions along the bridge. The calculated RF with the load factors for evaluation purposes was higher by 35% than that with design load factors. The proposed method also produces a 29% increase in RF compared to the conventional allowable stress design approach. Consequently, the proposed reliability-based procedure would be expected to permit a more economical assessment of bridge performance to be made.
引用
收藏
页码:575 / 583
页数:9
相关论文
共 50 条
  • [31] Fatigue life assessment for a composite box girder bridge
    Jun Yong Park
    Ho-Kyung Kim
    [J]. International Journal of Steel Structures, 2014, 14 : 843 - 853
  • [32] Reliability-based Load and Resistance Factor Design (LRFD) guidelines for hull girder bending
    Ayyub, BM
    Assakkaf, IA
    Sikora, JP
    Adamchak, JC
    Atua, K
    Melton, W
    Hess, PE
    [J]. NAVAL ENGINEERS JOURNAL, 2002, 114 (02) : 43 - 68
  • [33] Calculation method of transverse load distribution in box girder bridge
    Yu, Z. N.
    Yuan, Z. H.
    Guo, X. L.
    Yang, X. Z.
    [J]. BRIDGE MAINTENANCE, SAFETY, MANAGEMENT, LIFE-CYCLE SUSTAINABILITY AND INNOVATIONS, 2021, : 419 - 424
  • [34] DETERMINATION OF ROAD BRIDGE LOAD - CARRYING CAPACITY
    Vican, Josef
    Odrobinak, Jaroslav
    Gocal, Jozef
    [J]. CIVIL AND ENVIRONMENTAL ENGINEERING, 2021, 17 (01) : 286 - 297
  • [35] Reliability-based evaluation of scouring around dual bridge piers
    Yilmaz, Meric
    Calamak, Melih
    Yanmaz, A. Melih
    [J]. GRADEVINAR, 2019, 71 (09): : 739 - 747
  • [36] Structure Identification and Load Capacity Rating of Veteran's Memorial Curved Steel Box Girder Bridge
    Huang, Dongzhou
    [J]. TRANSPORTATION RESEARCH RECORD, 2010, (2200) : 98 - 107
  • [37] Reliability based design optimization of steel box girder bridge under corrosion attack
    Son, N. V.
    Jeong, M. C.
    Kim, S. H.
    Kong, J. S.
    [J]. BRIDGE MAINTENANCE, SAFETY, MANAGEMENT AND LIFE-CYCLE OPTIMIZATION, 2010, : 2717 - 2722
  • [38] Evaluation of a high performance concrete box girder bridge
    Greuel, A
    Rogers, BT
    Miller, RA
    Shahrooz, BM
    Baseheart, TM
    [J]. PCI JOURNAL, 2000, 45 (06): : 60 - 71
  • [39] Erratum to: Fatigue life assessment for a composite box girder bridge
    Jun Yong Park
    Ho-Kyung Kim
    [J]. International Journal of Steel Structures, 2015, 15 : 247 - 247
  • [40] NUMERICAL ANALYSIS OF A COMPOSITE STEEL BOX GIRDER BRIDGE IN FIRE
    Braxtan, Nicole Leo
    Wang, Qian
    Whitney, Reeves
    Koch, Gregory
    [J]. APPLICATIONS OF STRUCTURAL FIRE ENGINEERING, 2017,