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dc.contributor.authorMont´Alverne, Alexandre Miranda-
dc.contributor.authorDeus, Ênio Pontes de-
dc.contributor.authorOliveira Junior, Silvestre Carvalho de-
dc.contributor.authorMoura, Alfran Sampaio-
dc.date.accessioned2022-06-23T18:30:07Z-
dc.date.available2022-06-23T18:30:07Z-
dc.date.issued2012-
dc.identifier.citationMONT’ALVERNE, A.M. et al. Determination of the reinforced concrete slabs ultimate load using finite element method and mathematical programming. Latin American Journal of Solids and Structures, Rio de Janeiro-RJ, v. 9, p. 69-93, 2012.pt_BR
dc.identifier.issn1679-7825-
dc.identifier.urihttp://www.repositorio.ufc.br/handle/riufc/66636-
dc.description.abstractIn the present paper, the ultimate load of the reinforced concrete slabs [16] is determined using the finite element method and mathematical programming. The acting efforts and displacements in the slab are obtained by a perfect elasto-plastic analysis developed by finite element method. In the perfect elasto-plastic analysis the Newton-Raphson method [20] is used to solve the equilibrium equations at the global level of the structure. The relations of the plasticity theory [18] are resolved at local level. The return mapping problem in the perfect elasto-plastic analysis is formulated as a problem of mathematical programming [12]. The Feasible Arch Interior Points Algorithm proposed by Herskovits [8] is used as a return mapping algorithm in the perfect elasto-plastic analysis. The proposed algorithm uses Newton’s method for solving nonlinear equations obtained from the Karush-Kuhn-Tucker conditions [11] of the mathematical programming problem. At the end of this paper, it is analyzed six reinforced concrete slabs and the results are compared with available ones in literature.pt_BR
dc.language.isoenpt_BR
dc.publisherLatin American Journal of Solids and Structurespt_BR
dc.subjectOptimizationpt_BR
dc.subjectFinite element methodpt_BR
dc.subjectPlates theorypt_BR
dc.subjectReinforced concretept_BR
dc.titleDetermination of the reinforced concrete slabs ultimate load using finite element method and mathematical programmingpt_BR
dc.typeArtigo de Periódicopt_BR
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