TECHNICAL PAPERS
Apr 24, 2009

Monitoring Steel Girder Stability for Safer Bridge Erection

Publication: Journal of Performance of Constructed Facilities
Volume 23, Issue 6

Abstract

The collapse of the State Route 69 Bridge over the Tennessee River near Clifton, Tennessee, is an example of how instability and lateral torsional buckling failure of a single steel bridge girder during erection might cause collapse of the whole steel superstructure. Close attention should be given to the stability of steel plate girders during erection when the lateral support provided to the compression flange might temporarily not be present. Rules of thumb in use today have been adopted by contractors/subcontractors to check the stability of cantilever or simply supported girders under erection using the L/b ratio, where L is the unbraced length and b is the compression flange width. For each girder section, a maximum L/b ratio exists beyond which lateral torsional buckling failure would occur under girder self-weight. Parametric studies were conducted following the latest AASHTO LRFD code in order to indentify the maximum L/b ratio for various girder sections and check the rules of thumb, as well as determine the dominating section parameters on girder stability under erection. Advanced nonlinear finite-element analyses were also conducted on a girder section for both the cantilever and the simply supported case in order to further understand the behavior of girder instability due to lateral torsional buckling under the self-weight, as well as to develop a trial-and-error methodology for identifying the maximum L/b ratio using computer analysis. At the same time, the effect of lateral bracing location on the cantilever free end has been investigated, and it turned out that bracing the top tension flange would be more effective to prevent lateral torsional buckling than bracing the bottom compression flange.

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References

AASHTO. (2007). LRFD bridge design specifications, 4th Ed., Washington, D.C.
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McGormley, J. C., Hill, H. J., and Koob, M. J. (2006). “Collapse of the State Route 69 Bridge over the Tennessee River.” Proc., Structures and Extreme Events. IABSE Symp., Lisbon, Portugal, 326–327.
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Information

Published In

Go to Journal of Performance of Constructed Facilities
Journal of Performance of Constructed Facilities
Volume 23Issue 6December 2009
Pages: 391 - 398

History

Received: Dec 8, 2008
Accepted: Apr 13, 2009
Published online: Apr 24, 2009
Published in print: Dec 2009

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Authors

Affiliations

Q. Zhao, M.ASCE [email protected]
P.E.
Assistant Professor, Dept. of Civil and Environmental Engineering, 109A Perkins Hall, Univ. of Tennessee, Knoxville, TN 37996-2010 (corresponding author). E-mail: [email protected]
Graduate Student Researcher, Dept. of Civil and Environmental Engineering, 51B Perkins Hall, Univ. of Tennessee, Knoxville, TN 37996-2010. E-mail: [email protected]
E. G. Burdette, F.ASCE [email protected]
P.E.
Professor, Dept. of Civil and Environmental Engineering, 115 Perkins Hall, Univ. of Tennessee, Knoxville,TN 37996-2010. E-mail: [email protected]
J. S. Hastings [email protected]
P.E.
Civil Engineer Manager I, Tennessee Dept. of Transportation–TDOT, Suite 1100 James K. Polk Building, Nashville, TN 37243-0349. E-mail: [email protected]

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