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Adaptive nodeless variable finite elements with flux-based formulation for thermal-structural analysis

Adaptive nodeless variable finite elements with flux-based formulation for thermal-structural analysis
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摘要 A nodeless variable element method with the fluxbased formulation is developed to analyze two-dimensional thermal-structural problems. The nodeless variable formula- tion provides accurate temperature distributions to yield more accurate thermal stress solutions. The flux-based formulation is used to reduce the complexity in deriving the finite element equations as compared to the conventional finite element method. The solution accuracy is further improved by implementing an adaptive meshing technique to generate finite element meshes that can adapt and move along with the transient solution behavior. A version of a nearly optimal element size determination is proposed to provide high convergence rate of the predicted solutions. The combined procedure is evaluated by solving several thermal, structural, and thermal stress problems. A nodeless variable element method with the fluxbased formulation is developed to analyze two-dimensional thermal-structural problems. The nodeless variable formula- tion provides accurate temperature distributions to yield more accurate thermal stress solutions. The flux-based formulation is used to reduce the complexity in deriving the finite element equations as compared to the conventional finite element method. The solution accuracy is further improved by implementing an adaptive meshing technique to generate finite element meshes that can adapt and move along with the transient solution behavior. A version of a nearly optimal element size determination is proposed to provide high convergence rate of the predicted solutions. The combined procedure is evaluated by solving several thermal, structural, and thermal stress problems.
出处 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2008年第2期181-188,共8页 力学学报(英文版)
基金 the Thailand Research Fund (TRF)
关键词 Keywords Flux-based formulation Nodeless variablefinite element method Thermal stress Keywords Flux-based formulation Nodeless variablefinite element method Thermal stress
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