Title of article :
An efficient numerical method for singularly perturbed second order ordinary differential equation
Author/Authors :
Mohapatra, Jugl Department of Mathematics - National Institute of Technology Rourkela - India , Mahalik, Manas Kkumar Department of Mathematics - National Institute of Technology Rourkela - India
Pages :
16
From page :
33
To page :
48
Abstract :
Abstract. In this paper an exponentially fitted finite difference method is presented for solving singularly perturbed two-point boundary value prob- lems with the boundary layer. A fitting factor is introduced and the model equation is discretized by a finite difference scheme on an uniform mesh. Thomas algorithm is used to solve the tri-diagonal system. The stability of the algorithm is investigated. It is shown that the proposed technique is of first order accurate and the error constant is independent of the pertur- bation parameter. Several problems are solved and numerical results are presented to support the theoretical error bounds established.
Keywords :
uniform convergence , exponential fitting factor , Thomas algorithm , boundary layers , Singular perturbation problems
Journal title :
Astroparticle Physics
Serial Year :
2015
Record number :
2419538
Link To Document :
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