Higher-order non-linear analysis of steel structures. Part I : elastic second-order formulation
Data(s) |
2012
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Resumo |
This paper presents a higher-order beam-column formulation that can capture the geometrically non-linear behaviour of steel framed structures which contain a multiplicity of slender members. Despite advances in computational frame software, analyses of large frames can still be problematic from a numerical standpoint and so the intent of the paper is to fulfil a need for versatile, reliable and efficient non-linear analysis of general steel framed structures with very many members. Following a comprehensive review of numerical frame analysis techniques, a fourth-order element is derived and implemented in an updated Lagrangian formulation, and it is able to predict flexural buckling, snap-through buckling and large displacement post-buckling behaviour of typical structures whose responses have been reported by independent researchers. The solutions are shown to be efficacious in terms of a balance of accuracy and computational expediency. The higher-order element forms a basis for augmenting the geometrically non-linear approach with material non-linearity through the refined plastic hinge methodology described in the companion paper. |
Formato |
application/pdf |
Identificador | |
Publicador |
The Hong Kong Institute of Steel Construction |
Relação |
http://eprints.qut.edu.au/67074/1/Manuscript-I.pdf http://www.researchgate.net/publication/235986467_Higher-Order_Non-Linear_Analysis_of_Steel_Structures._Part_I_Elastic_Second-Order_Formulation/file/72e7e51537cae1384f.pdf Iu, C.K. & Bradford, M.A. (2012) Higher-order non-linear analysis of steel structures. Part I : elastic second-order formulation. Advanced Steel Construction, 8(2), pp. 168-182. |
Direitos |
Copyright 2012 The Hong Kong Institute of Steel Construction |
Fonte |
School of Civil Engineering & Built Environment; Science & Engineering Faculty |
Palavras-Chave | #010301 Numerical Analysis #090506 Structural Engineering #120403 Engineering Design Methods #beam-column #frames #geometric nonlinearity #material nonlinearity #higher-order element |
Tipo |
Journal Article |