Nonlinear finite element analysis of reinforced concrete shear walls

Author:

Silva Jordlly Reydson de Barros1ORCID,Horowitz Bernardo2ORCID

Affiliation:

1. Universidade Federal Rural de Pernambuco, Brasil; Universidade Federal de Pernambuco, Brasil

2. Universidade Federal de Pernambuco, Brasil

Abstract

ABSTRACT: This paper deals with a fundamental issue for tall buildings safety: the structural analysis of reinforced concrete shear-walls that resist lateral loads. For two shear walls (simple planar and U-shaped), the results determined according to the Brazilian design code approximate procedure (NBR-6118:2014) and the grid method (CAD/TQS), presented in the literature, are compared with material and geometrically nonlinear finite shell element analysis (NL-FEA), performed by the software VecTor 4, based on the modified compression field theory (MCFT). In both cases NL-FEA analyses, besides the large computational cost, it was observed the significant influence of stress redistribution, and the Saint-Venant’s principle, on the vertical normal stresses, and the consequent smoothing of the second order localized effects on the shear walls.

Publisher

FapUNIFESP (SciELO)

Reference21 articles.

1. Reinforced Concrete: Mechanics & Design;Wight J. K.,2012

2. Projeto de Estruturas de Concreto – Procedimento, NBR 6118,2014

3. Behaviour and modelling of reinforced concrete slabs and shells under static and dynamic loads;Hrynyk T. D.,2013

4. Dimensionamento, detalhamento e execução de pilares-parede;Almeida V. B.,2018

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