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dc.contributor.authorHa, Manh Hungvi
dc.contributor.otherVu, Quang Vietvi
dc.contributor.otherTruong, Viet Hungvi
dc.date.accessioned2020-06-26T02:17:54Z-
dc.date.available2020-06-26T02:17:54Z-
dc.date.issued2020-
dc.identifier.issn0965-9978vi
dc.identifier.urihttp://tailieuso.tlu.edu.vn/handle/DHTL/9004-
dc.description.abstractIn this article, an efcient methodology is developed to optimize nonlinear steel frames under several load combinations. For that purpose, inelastic advanced analyses of steel frames are performed using plastic hinge beam–column elements to reduce computational efforts. An improved differential evolution (DE) algorithm is utilized as a global optimizer to refne the solution accuracy and enhance the convergence speed. Compared to the conventional DE algorithm, this newly developed method provides four major improvements such as: (1) a new mutation strategy based on the p-best method; (2) the multi-comparison technique (MCT) to decrease the number of unnecessary objective function evaluations; (3) a promising individual method (PIM) to choose trial individuals; and (4) a trial matrix containing all evaluated individuals to avoid objective function evaluations of duplicate individuals. Furthermore, panel zones are taken account of optimum design for the frst time. Doubler plates are designed to prevent panel-zone shear deformations. Three mid- to large-size steel frames considering several load combinations required by AISC-LRFD are considered. Five new and efcient meta-heuristic algorithms are employed for comparison.vi
dc.languageenvi
dc.relation.ispartofseriesAdvances in Engineering Software, Vol 142 (2020) 102771, 18 p.; https://doi.org/10.1016/j.advengsoft.2020.102771vi
dc.subjectOptimizationvi
dc.subjectSteel framevi
dc.subjectDifferential evolutionvi
dc.subjectPanel-zonevi
dc.subjectAdvanced analysisvi
dc.titleOptimization of nonlinear inelastic steel frames considering panel zonesvi
dc.typeBBvi
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