A New Method for Solving Sequential Fractional Wave Equations

Author:

Syam Sondos M.1ORCID,Siri Z.1ORCID,Kasmani R. Md.1ORCID,Yildirim Kenan2ORCID

Affiliation:

1. Institute of Mathematical Sciences, Universiti Malaya, Kuala Lumpur 50603, Malaysia

2. Mus Alparslan University, Mus, Turkey

Abstract

In this article, we focus on two classes of fractional wave equations in the context of the sequential Caputo derivative. For the first class, we derive the closed-form solution in terms of generalized Mittag–Leffler functions. Subsequently, we consider a more general class of nonhomogeneous fractional wave equations. Due to the complexity of finding exact solutions for these problems, we employ a numerical technique based on the operational matrix method to approximate the solution. We provide several theoretical and numerical examples to validate the effectiveness of this numerical approach. The results demonstrate the accuracy and efficiency of the proposed method.

Publisher

Hindawi Limited

Subject

General Mathematics

Reference26 articles.

1. On sequential fractional differential equations;X. J. Yang;Mathematical Problems in Engineering,2017

2. On the solutions of sequential fractional differential equations;D. Baleanu;Journal of Computational and Nonlinear Dynamics,2013

3. Sequential fractional variational calculus;D. F. M. Torres;Journal of Computational and Applied Mathematics,2014

4. A new approach for solving two-dimensional fractional partial differential equations using operational matrix method and Galerkin method;K. Maleknejad;Journal of Computational Physics,2016

5. An operational matrix method based on Newton–Raphson method for solving nonlinear fractional partial differential equations;S. A. Yousefi;Journal of Computational and Applied Mathematics,2018

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