A defect-correction method for unsteady conduction–convection problems II: Time discretization

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摘要

In this paper, a fully discrete defect-correction mixed finite element method (MFEM) for solving the non-stationary conduction–convection problems in two dimension, which is leaded by combining the Back Euler time discretization with the two-step defect correction in space, is presented. In this method, we solve the nonlinear equations with an added artificial viscosity term on a finite element grid and correct these solutions on the same grid using a linearized defect-correction technique. The stability and the error analysis are derived. The theory analysis shows that our method is stable and has a good convergence property. Some numerical results are also given, which show that this method is highly efficient for the unsteady conduction–convection problems.

论文关键词:65N30,65N12,65Z05,76M10,Non-stationary conduction–convection problems,Mixed finite element method,Defect-correction,Fully discrete,Stability analysis,Error estimates

论文评审过程:Received 29 September 2009, Revised 6 December 2010, Available online 29 December 2011.

论文官网地址:https://doi.org/10.1016/j.cam.2011.12.014