Detalhes do Documento

Numerical solution of curved pipes submitted to in-plane loading conditions

Autor(es): Fonseca, E.M.M. cv logo 1 ; Melo, F.J.M.Q. de cv logo 2

Data: 2010

Identificador Persistente: http://hdl.handle.net/10198/1338

Origem: Biblioteca Digital do IPB

Assunto(s): Curved pipe; In-plane loading; Linear analysis; Polynomial function


Descrição
An alternative formulation to current meshes dealing with finite shell elements is presented to solve the problem of stress analysis of curved pipes subjected to in-plane bending forces. The solution is based on finite curved elements, where displacements are defined from a total set of trigonometric functions or a fifth-order polynomial, combined with Fourier series. Global shell displacements are achieved through the one associated with curved arch bending and the other referred to the toroidal thin-walled shell distortion. Beam-type displacement and in-plane rotation are uncoupled and separately formulated, using trigonometric shape functions, as in Timoshenko or Mindlin beam theory. To build up the solution, a simple deformation model was adopted, based on the semi-membrane concept of the doubly curved shells behaviour. Several studies are presented and compared with experimental and numerical analyses reported by other authors.
Tipo de Documento Artigo
Idioma Inglês
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