Numerical solution of Lane-Emden type equations using Adomian decomposition method with unequal step-size partitions
ISSN: 0264-4401
Article publication date: 9 June 2020
Issue publication date: 27 January 2021
Abstract
Purpose
The purpose of this paper is to obtain the highly accurate numerical solution of Lane–Emden-type equations using modified Adomian decomposition method (MADM) for unequal step-size partitions.
Design/methodology/approach
First, the authors describe the standard Adomian decomposition scheme and the Adomian polynomials for solving nonlinear differential equations. After that, for the fast calculation of the Adomian polynomials, an algorithm is presented based on Duan’s corollary and Rach’s rule. Then, MADM is discussed for the unequal step-size partitions of the domain, to obtain the numerical solution of Lane–Emden-type equations. Moreover, convergence analysis and an error bound for the approximate solution are discussed.
Findings
The proposed method removes the singular behaviour of the problems and provides the high precision numerical solution in the large effective region of convergence in comparison to the other existing methods, as shown in the tested examples.
Originality/value
Unlike the other methods, the proposed method does not require linearization or perturbation to obtain an analytical and numerical solution of singular differential equations, and the obtained results are more physically realistic.
Keywords
Acknowledgements
The authors express their sincere thanks to editor in chief, editor and reviewers for their valuable suggestions to revise this manuscript.
Citation
, U. and Kumar, M. (2021), "Numerical solution of Lane-Emden type equations using Adomian decomposition method with unequal step-size partitions", Engineering Computations, Vol. 38 No. 1, pp. 1-18. https://doi.org/10.1108/EC-02-2020-0073
Publisher
:Emerald Publishing Limited
Copyright © 2020, Emerald Publishing Limited