Nonlinear Cyclic Analysis of Reinforced Concrete Columns Using Fiber Section Approach
Publié en ligne: 11 juil. 2022
Pages: 55 - 71
Reçu: 30 mars 2022
Accepté: 08 juin 2022
DOI: https://doi.org/10.2478/ncr-2022-0002
Mots clés
© 2022 Ali Vatanshenas, published by Sciendo
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.
This study investigates nonlinear modeling and verification of a reinforced concrete element using the fiber section method. At first, the theory related to the fiber section approach and hysteresis models used for cyclic analysis is given. Then, a reinforced concrete column tested previously in the literature is modeled and simulation results are compared with the test results. An acceptable approximation is made utilizing only a few input parameters: Uniaxial stress-strain curves of the materials, location and length of the plastic hinge, and geometry of the model. Moreover, the axial force-moments interaction curve from Eurocode is compared with the one obtained from the nonlinear model. It is shown that by conducting nonlinear analysis a larger capacity of the element is considered which results in a more realistic and economic design.