Assessment of Shear Forces on Bridge Abutments: Simplified Method |
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Authors: | G. Benzoni M. P. Limongelli M. J. N. Priestley |
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Affiliation: | 1Research Scientist, Dept. of Structural Engineering, Univ. of California San Diego, La Jolla, CA?92093-0085. 2Assistant Professor of Structural Engineering, Dip. Ing. Strutturale, Politecnico di Milano, Piazza L. da Vinci 32, 20133, Milano, Italy. 3Professor of Structural Engineering, Dept. of Structural Engineering, Univ. of California San Diego, La Jolla, CA?92093-0085.
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Abstract: | The conventional application of reduction factors to response spectrum analysis results is inappropriate for the abutment shear forces, which are based on elastic action. On the other hand, adopting the unreduced values from the elastic dynamic analysis does not achieve equilibrium among the abutment shear forces, deck inertia forces, and reduced pier forces. A simplified method is here proposed for the assessment of the shear on the abutments, documented by comparison with response spectrum and time history nonlinear analyses for several bridge configurations. For the analyzed configuration of the bridge with an internal movement joint, the response spectrum analysis underestimates the shear on the abutment for low values of the abutment flexibility and overestimates it when the stiffness of the abutments becomes higher than that of the piers. In all the case studies analyzed, the proposed method approximates the time history results better than the response spectrum. |
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Keywords: | Bridge abutments Shear forces |
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