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Singularly perturbed advection-diffusion-reaction problems : Comparison of operator-fitted methods (CROSBI ID 159311)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Kavčič, Iva ; Rogina, Mladen ; Bosner, Tina Singularly perturbed advection-diffusion-reaction problems : Comparison of operator-fitted methods // Mathematics and computers in simulation, 81 (2011), 10; 2215-2224. doi: 10.1016/j.matcom.2010.12.029

Podaci o odgovornosti

Kavčič, Iva ; Rogina, Mladen ; Bosner, Tina

engleski

Singularly perturbed advection-diffusion-reaction problems : Comparison of operator-fitted methods

We compare classical methods for singular perturbation problems, such as El-Mistikawy and Werle scheme and its modifications, to exponential spline collocation schemes. We discuss subtle differences that exist in applying this method to one dimensional reaction-diffusion problems and advection-diffusion problems. For pure advection-diffusion problems, exponential tension spline collocation is less capable of capturing only one boundary layer, which happens when no reaction term is present. Thus the existing collocation scheme in which the approximate solution is a projection to the space piecewisely spanned by $\{; ; ; ; ; ; 1, x, \exp{; ; ; ; ; ; \left(\pm p x\right)}; ; ; ; ; ; \}; ; ; ; ; ; $ is inferior to the generalization of El-Mistikawy and Werle method proposed by Ramos. We show how to remedy this situation by considering projections to spaces locally spanned by $\{; ; ; ; ; ; 1, x, x^{; ; ; ; ; ; 2}; ; ; ; ; ; , \exp{; ; ; ; ; ; \left(p x\right)}; ; ; ; ; ; \}; ; ; ; ; ; $, where $p>0$ is a tension parameter. Next, we exploit a unique feature of collocation methods, that is, the existence of special collocation points which yield better global convergence rates and double the convergence order at the knots.

singular perturbations ; boundary layers ; collocation ; difference schemes ; exponential splines

Rad je prezentiran na skupu The 3rd International Conference on Approximation Methods and Numerical Modeling in Environment and Natural Resources (MAMERN 2009).

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Podaci o izdanju

81 (10)

2011.

2215-2224

objavljeno

0378-4754

1872-7166

10.1016/j.matcom.2010.12.029

Povezanost rada

Fizika, Geologija, Matematika

Poveznice
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