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A numerical approach for modeling the fire induced restraint effects in reinforced concrete beams
Authors:MB Dwaikat  VKR Kodur
Affiliation:Civil and Environmental Engineering, Michigan State University, East Lansing, MI 48824-1126, USA
Abstract:In this paper, a model to predict the influence of fire induced restraints on the fire resistance of reinforced concrete (RC) beams is presented. The three stages, associated with the fire growth, thermal and structural analysis, for the calculation of fire resistance of the RC beams are explained. A simplified approach to account for spalling under fire conditions is incorporated into the model. The validity of the numerical model is established by comparing the predictions from the computer program with results from full-scale fire resistance tests. The program is used to conduct two case studies to investigate the influence of both the rotational and the axial restraint on the fire response of the RC beams. Through these case studies, it is shown that the restraint, both rotational and axial, has significant influence on the fire resistance of the RC beams.
Keywords:Fire resistance  Computer program  Fire induced restraint  High temperature  High-strength concrete  Reinforced concrete beams  Spalling  Numerical model
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