Finite Difference Energy Method for nonlinear numerical analysis of reinforced concrete slab using simplified isotropic damage model

This work presents a model to predict the flexural behavior of reinforced concrete slabs, combining the Mazars damage model for simulation of the loss of stiffness of the concrete during the cracking process and the Classical Theory of Laminates, to govern the bending of the structural element. A va...

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Main Authors: M. V. A. Lima, J. M. F. Lima, P. R. L. Lima
Format: Article
Language:English
Published: Instituto Brasileiro do Concreto (IBRACON)
Series:Revista IBRACON de Estruturas e Materiais
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1983-41952014000600004&lng=en&tlng=en
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spelling doaj-bbb422e60f874a62ad9d4b1b82b1bcf82020-11-25T00:48:27ZengInstituto Brasileiro do Concreto (IBRACON)Revista IBRACON de Estruturas e Materiais1983-41957694096410.1590/S1983-41952014000600004S1983-41952014000600004Finite Difference Energy Method for nonlinear numerical analysis of reinforced concrete slab using simplified isotropic damage modelM. V. A. Lima0J. M. F. Lima1P. R. L. Lima2Universidade Estadual de Feira de SantanaUniversidade Estadual de Feira de SantanaUniversidade Estadual de Feira de SantanaThis work presents a model to predict the flexural behavior of reinforced concrete slabs, combining the Mazars damage model for simulation of the loss of stiffness of the concrete during the cracking process and the Classical Theory of Laminates, to govern the bending of the structural element. A variational formulation based on the principle of virtual work was developed for the model, and then treated numerically according to the Finite Difference Energy Method, with the end result a program developed in Fortran. To validate the model thus proposed have been simulated with the program, some cases of slabs in flexure in the literature. The evaluation of the results obtained in this study demonstrated the capability of the model, in view of the good predictability of the behavior of slabs in flexure, sweeping the path of equilibrium to the rupture of the structural element. Besides the satisfactory prediction of the behavior observed as positive aspects of the model to its relative simplicity and reduced number of experimental parameters necessary for modeling.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1983-41952014000600004&lng=en&tlng=enreinforced concrete slabsdamage mechanicsfinite difference energy method
collection DOAJ
language English
format Article
sources DOAJ
author M. V. A. Lima
J. M. F. Lima
P. R. L. Lima
spellingShingle M. V. A. Lima
J. M. F. Lima
P. R. L. Lima
Finite Difference Energy Method for nonlinear numerical analysis of reinforced concrete slab using simplified isotropic damage model
Revista IBRACON de Estruturas e Materiais
reinforced concrete slabs
damage mechanics
finite difference energy method
author_facet M. V. A. Lima
J. M. F. Lima
P. R. L. Lima
author_sort M. V. A. Lima
title Finite Difference Energy Method for nonlinear numerical analysis of reinforced concrete slab using simplified isotropic damage model
title_short Finite Difference Energy Method for nonlinear numerical analysis of reinforced concrete slab using simplified isotropic damage model
title_full Finite Difference Energy Method for nonlinear numerical analysis of reinforced concrete slab using simplified isotropic damage model
title_fullStr Finite Difference Energy Method for nonlinear numerical analysis of reinforced concrete slab using simplified isotropic damage model
title_full_unstemmed Finite Difference Energy Method for nonlinear numerical analysis of reinforced concrete slab using simplified isotropic damage model
title_sort finite difference energy method for nonlinear numerical analysis of reinforced concrete slab using simplified isotropic damage model
publisher Instituto Brasileiro do Concreto (IBRACON)
series Revista IBRACON de Estruturas e Materiais
issn 1983-4195
description This work presents a model to predict the flexural behavior of reinforced concrete slabs, combining the Mazars damage model for simulation of the loss of stiffness of the concrete during the cracking process and the Classical Theory of Laminates, to govern the bending of the structural element. A variational formulation based on the principle of virtual work was developed for the model, and then treated numerically according to the Finite Difference Energy Method, with the end result a program developed in Fortran. To validate the model thus proposed have been simulated with the program, some cases of slabs in flexure in the literature. The evaluation of the results obtained in this study demonstrated the capability of the model, in view of the good predictability of the behavior of slabs in flexure, sweeping the path of equilibrium to the rupture of the structural element. Besides the satisfactory prediction of the behavior observed as positive aspects of the model to its relative simplicity and reduced number of experimental parameters necessary for modeling.
topic reinforced concrete slabs
damage mechanics
finite difference energy method
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1983-41952014000600004&lng=en&tlng=en
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