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Doctoral Thesis
DOI
https://doi.org/10.11606/T.18.2016.tde-31032016-121303
Document
Author
Full name
Faustino Sanches Júnior
Institute/School/College
Knowledge Area
Date of Defense
Published
São Carlos, 2003
Supervisor
Committee
Venturini, Wilson Sergio (President)
Bucalem, Miguel Luiz
El Debs, Ana Lúcia Homce de Cresce
Menezes, Francisco Antonio
Nóbrega, Selma Hissae Shimura da
Title in Portuguese
Desenvolvimento de modelos numéricos para a análise de estruturas de pavimentos de edifícios
Keywords in Portuguese
Concreto armado
Elementos finitos
Modelo para cisalhamento
Não-linearidade física
Pavimentos de edifícios
Placas de Reissner-Mindlin
Vigas de Timoshenko
Abstract in Portuguese
Este trabalho fornece uma contribuição à análise estrutural não-linear de pavimentos de edifícios de concreto armado com o emprego do Método dos Elementos Finitos. A deformação por esforço cortante é considerada, portanto as teorias de Timoshenko e de Reissner-Mindlin são empregadas nas formulações dos elementos de barra e de placa, respectivamente. As posições dos elementos de barra e de placa são independentes e, portanto, podem ser definidas em diferentes planos. Em conseqüência do exposto, o efeito de membrana deve ser necessariamente considerado na modelagem do pavimento. Para completar o modelo mecânico, as não-linearidades físicas descrevem o comportamento do concreto e do aço. A deterioração do concreto no cisalhamento é também considerada através de um modelo simplificado que é proposto para a modelagem do cisalhamento em condições de serviço.
Title in English
Development of numerical algorithms to the buildings floors structures analysis
Keywords in English
Building floors
Finite elements
Physical nonlinearity
Reinforced concrete
Reissner-Mindlin's plates
Shear algorithm
Timoshenko's beams
Abstract in English
This work gives a contribution to the non-linear structural analysis of reinforced concrete buildings floors using the Finite Element Method. The shear strain components are taken into account by adopting the Timoshenko's beam theory together with and the Reissner-Mindlin's theory for plate bending. Bar and plate element position are independent and therefore can be defined at different planes. As several level are considered when defining the structure membrane effects are necessary considered. In order to complete the mechanical model, physical non-linearities are also assumed to describe concrete and steel behaviours. The deterioration of the concrete material in shear is also taken account. For this purpose, a simplified model is adopted to compute approximately the damaged shear component in the steel direction.
 
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Publishing Date
2016-03-31
 
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