Title of article
Goal-oriented a posteriori error estimates for transport problems Original Research Article
Author/Authors
Dmitri Kuzmin، نويسنده , , Sergey Korotov، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2010
Pages
10
From page
1674
To page
1683
Abstract
Some aspects of goal-oriented a posteriori error estimation are addressed in the context of steady convection–diffusion equations. The difference between the exact and approximate values of a linear target functional is expressed in terms of integrals that depend on the solutions to the primal and dual problems. Gradient averaging techniques are employed to separate the element residual and diffusive flux errors without introducing jump terms. The dual solution is computed numerically and interpolated using higher-order basis functions. A node-based approach to localization of global errors in the quantities of interest is pursued. A possible violation of Galerkin orthogonality is taken into account. Numerical experiments are performed for centered and upwind-biased approximations of a 1D boundary value problem.
Keywords
Stationary convection–diffusion equations , The finite element method , A posteriori error estimates , Goal-oriented quantities , Mesh adaptation
Journal title
Mathematics and Computers in Simulation
Serial Year
2010
Journal title
Mathematics and Computers in Simulation
Record number
854938
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