Impact of diaphragms on seismic response of straight slab-on-girder steel bridges

被引:37
作者
Zahrai, SM [1 ]
Bruneau, M [1 ]
机构
[1] Univ Ottawa, Dept Civil Engn, Ottawa Carleton Earthquake Engrg Res Ctr, Ottawa, ON K1N 6N5, Canada
来源
JOURNAL OF STRUCTURAL ENGINEERING-ASCE | 1998年 / 124卷 / 08期
关键词
D O I
10.1061/(ASCE)0733-9445(1998)124:8(938)
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Many steel bridges have suffered diaphragm (cross frame) damage during recent earthquakes. Diaphragms provide an important load path for the seismically induced loads acting on slab-on-girder steel bridges, but their impact on seismic response is still unclear in many ways. The relative role played by intermediate and end diaphragms in providing lateral load resistance, along with the consequences of diaphragm damage on bridge seismic response, has not been studied. This paper quantitatively investigates the impact of diaphragms on the seismic response of straight slab-on-girder steel bridges. Typical 20 to 60 m span slab-on-girder bridges with and without diaphragms are considered and studied through elastic and inelastic static pushover analyses. Two hand-calculation analytical models are proposed to evaluate their period, elastic response, and pseudospectral acceleration at first yielding. It is shown that a small end-diaphragm stiffness is sufficient to make the entire superstructure behave as a unit in the elastic range. However, a dramatic shift in seismic behavior occurs once an end diaphragm fractures, with a sizable period elongation, considerably larger lateral displacements, and higher propensity to damage owing to P-Delta effects. It is also found that the presence of intermediate diaphragms does not significantly influence the seismic performance of these types of bridges, in either the elastic or the inelastic range.
引用
收藏
页码:938 / 947
页数:10
相关论文
共 50 条
[31]   Analytical investigation of Buckling Restrained Braces' applications in bidirectional ductile end diaphragms for seismic performance of slab-on-girder bridge [J].
Wei, Xiaone ;
Bruneau, Michel .
ENGINEERING STRUCTURES, 2017, 141 :634-650
[32]   EFFECTS OF DIAPHRAGMS IN CONTINUOUS SLAB AND GIRDER HIGHWAY BRIDGES. [J].
Wong, A.Y.C. ;
Gamble, W.L. .
Effluent & Water Treatment Journal, 1973, (391)
[33]   A COMBINED BOUNDARY ELEMENT AND FINITE-ELEMENT SOLUTION OF SLAB AND SLAB-ON-GIRDER BRIDGES [J].
NG, SF ;
CHEUNG, MS ;
XU, TY .
COMPUTERS & STRUCTURES, 1990, 37 (06) :1069-1075
[34]   Seismic behavior of diaphragms in reinforced concrete girder bridges [J].
Zhu, X ;
Chen, XC ;
Rong, JJ .
ADVANCES IN STRUCTURAL ENGINEERING, 1995, :104-108
[35]   Discussion on AASHTO LRFD Load Distribution Factors for Slab-on-Girder Bridges [J].
Cai, C. S. .
PRACTICE PERIODICAL ON STRUCTURAL DESIGN AND CONSTRUCTION, 2005, 10 (03) :171-176
[36]   SEISMIC RESPONSE OF CURVED STEEL BOX GIRDER BRIDGES [J].
ABDELSALAM, MN ;
HEINS, CP .
JOURNAL OF STRUCTURAL ENGINEERING-ASCE, 1988, 114 (12) :2790-2800
[37]   PARAMETRIC STUDY ON NONCOMPOSITE SLAB-ON-GIRDER BRIDGES WITH ENFORCED FRICTIONAL CONTACT [J].
LIN, JJ ;
BEAULIEU, D ;
FAFARD, M .
CANADIAN JOURNAL OF CIVIL ENGINEERING, 1994, 21 (02) :237-250
[38]   Spring analogy to predict the 3-D live load response of slab-on-girder bridges [J].
Akinci, Necip Onder ;
Liu, Judy ;
Bowman, Mark D. .
ENGINEERING STRUCTURES, 2013, 56 :1049-1057
[39]   Redistribution of longitudinal moments in straight, continuous concrete slab - steel girder composite bridges [J].
Razaqpur, A. Ghani ;
Esfandiari, Afshin .
CANADIAN JOURNAL OF CIVIL ENGINEERING, 2006, 33 (04) :471-488
[40]   Endurance time analysis of skewed slab-on-girder bridges: The significance of the excitation angle [J].
Estekanchi, H. E. ;
Ghaffari, E. ;
Haghani-Baei, A. .
SCIENTIA IRANICA, 2019, 26 (04) :2276-2285