Effects of column and superstructure stiffness on the seismic response of bridges in the transverse direction

Author:

Tehrani Payam1,Mitchell Denis1

Affiliation:

1. McGill University, Department of Civil Engineering, 817 Sherbrooke St. West, Montreal QC H3A 2K6, Canada.

Abstract

The transverse seismic responses of continuous 4-span bridges designed based on the 2006 Canadian Highway Bridge Design Code were studied using inelastic time history analyses. A total of 648 bridge configurations were considered in which the column heights, column diameters, superstructure stiffness and mass as well as abutment restraint conditions were studied. The maximum ductility demands obtained using elastic and inelastic analyses were compared to study the influence of the degree of irregularity. The effects of column stiffness ratios and superstructure to substructure stiffness ratios on the maximum ductility demands and concentration of ductility demands were investigated. A number of different regularity indices were compared to determine the suitability of these different indices in predicting the influence of irregularity. This study demonstrates the conservative nature of the 2006 Canadian Highway Bridge Design Code and provides some guidance on factors for determining the degree of irregularity and suitable regularity indices when carrying out nonlinear dynamic analyses of bridges.

Publisher

Canadian Science Publishing

Subject

General Environmental Science,Civil and Structural Engineering

Reference27 articles.

1. AASHTO. 2004. AASHTO LRFD Bridge Design Specifications American Association of State Highway and Transportation Officials, Washington, D.C.

2. AASHTO. 2009. Guide specifications for LRFD seismic bridge design, Subcommittee T-3 for Seismic Effects on Bridges, American Association of State Highway and Transportation Officials, Washington D.C.

3. Berry, M.P., and Eberhard, M.O. 2007. Performance modeling strategies for modern reinforced concrete bridge columns. PEER-2007/07, Pacific Earthquake Engineering Research Center, University of California - Berkeley, Berkeley, CA.

4. Analysis of the failure of interstate 10 freeway ramp during the Northridge earthquake of 17 January 1994

5. Calvi, G.M., and Pinto, P.E. 1996. Experimental and numerical investigations on the seismic response of bridges and recommendations for code provisions. ECOESJIPREC8 Report No 4, LNEC. Lisbon.

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