A two-parameter defect-correction method for computation of steady-state viscoelastic fluid flow

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摘要

The numerical simulation of viscoelastic fluid flow becomes more difficult as a physical parameter, the Weissenberg number, increases. Specifically, at a Weissenberg number larger than a critical value, the iterative nonlinear solver fails to converge. In this paper a two-parameter defect-correction method for viscoelastic fluid flow is presented and analyzed. In the defect step the Weissenberg number is artificially reduced to solve a stable nonlinear problem. The approximation is then improved in the correction step using a linearized correction iteration. Numerical experiments support the theoretical results and demonstrate the effectiveness of the method.

论文关键词:Viscoelastic fluid,Defect correction,Finite element,Discontinuous Galerkin,Weissenberg number

论文评审过程:Available online 16 July 2007.

论文官网地址:https://doi.org/10.1016/j.amc.2007.07.014