Affiliation:
1. ARTVIN CORUH UNIVERSITY
Abstract
In this paper, we propose a weak Galerkin finite element method (WG-FEM) for solving two-point boundary value problems of convection-dominated type on a Bakhvalov-type mesh. A special interpolation operator which has a simple representation and can be easily extended to higher dimensions is introduced for convection-dominated problems. A robust optimal order of uniform convergence has been proved in the energy norm with this special interpolation using piecewise polynomials of degree $k\geq 1$ on interior of the elements and piecewise constant on the boundary of each element. The proposed finite element scheme is independent of parameter and since the interior degree of freedom can be eliminated efficiently from the resulting discrete system, number of unknowns of the proposed method is comparable with the standard finite element methods. An optimal order of uniform convergence is derived on Bakhvalov-type mesh. Finally, numerical experiments are given to support the theoretical findings and show the efficiency of the proposed method.
Subject
Geometry and Topology,Statistics and Probability,Algebra and Number Theory,Analysis
Reference36 articles.
1. 1] V.B. Andreev and N. Kopteva, On the convergence, uniform with respect to a small parameter, of monotone three-point difference schemes. Differ. Equ. 34, 7, (1998).
2. [2] N.S. Bakhvalov, On the optimization of the methods for solving boundary value problems in the presence of a boundary layer. Zh. Vychisl. Mat. Mat. Fiz. 9, 841–859,1969.
3. [3] M. Bradar and H. Zarin, A singularly perturbed problem with two parameters on a Bakhvalov-type mesh, J. Comput. Appl. Math. 292, 307–319, 2016.
4. [4] M. Bradar, H. Zarin and L. Teofanov, A singularly perturbed problem with two parameters in two dimensions on graded meshes, Comput. Math. Appl. 72, 2582–2603, 2016.
5. [5] S. Franz and H.-G Roos, The capriciousness of numerical methods for singular perturbations, SIAM Rev. 53(1), 157–173, 2011.
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