A New Hybrid Block Method for Solving First-Order Differential System Models in Applied Sciences and Engineering

Author:

Rufai Mufutau Ajani1ORCID,Carpentieri Bruno1ORCID,Ramos Higinio23ORCID

Affiliation:

1. Faculty of Engineering, Free University of Bozen-Bolzano, 39100 Bolzano, Italy

2. Scientific Computing Group, Universidad de Salamanca, Plaza de la Merced, 37008 Salamanca, Spain

3. Department of Mathematics, Escuela Politecnica Superior de Zamora, Campus Viriato, 49022 Zamora, Spain

Abstract

This paper presents a new hybrid block method formulated in variable stepsize mode to solve some first-order initial value problems of ODEs and time-dependent partial differential equations in applied sciences and engineering. The proposed method is implemented considering an adaptive stepsize strategy to maintain the estimated error in each step within a specified tolerance. In order to evaluate the performance and usefulness of the proposed technique in real-world applications, several differential problems from applied sciences and engineering, such as the SIR model, Jacobi elliptic function problem, and chemical reactions problems, are solved numerically. The results of numerical simulations in this work demonstrate that the proposed method is more efficient than other existing numerical methods used for comparisons.

Publisher

MDPI AG

Subject

Statistics and Probability,Statistical and Nonlinear Physics,Analysis

Reference24 articles.

1. Butcher, J.C. (2008). Numerical Methods for Ordinary Differential Equations, John Wiley & Sons.

2. Lambert, J.D. (1991). Numerical Methods for Ordinary Differential Systems: The Initial Value Problem, John Wiley & Sons.

3. Ascher, U.M., and Petzold, L.R. (1998). Computer Methods for Ordinary Differential Equations and Differential-Algebraic Equations, Society for Industrial and Applied Mathematics (SIAM).

4. Gustafsson, S. (2017). Numerical Methods for Differential Equations: An Introduction to Scientific Computing, Springer.

5. Brugnano, L., and Trigiante, D. (1998). Solving Differential Problems by Multistep Initial and Boundary Value Methods, Gordon and Breach Science Publishers.

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