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A robust scheme for Caputo variable-order time-fractional diffusion-type equations

delete2023-04-28
delete11
PRE
AI
K
Khadijeh Sadri *
K
K. Hosseini
D
Dumitru Bǎleanu *
S
Soheil Salahshour
E
Evren Hinçal
DOI:10.1007/s10973-023-12141-0delete
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Abstract

Abstract

En 中文
The focus of this work is to construct a pseudo-operational Jacobi collocation scheme for numerically solving the Caputo variable-order time-fractional diffusion-type equations with applications in applied sciences. Modeling scientific phenomena in the context of fluid flow problems, curing reactions of thermosetting systems, solid oxide fuel cells, and solvent diffusion into heavy oils led to the appearance of these equations. For this reason, the numerical solution of these equations has attracted a lot of attention. More precisely, using pseudo-operational matrices and appropriate approximations based on bivariate Jacobi polynomials, the approximate solutions of the variable-order time-fractional diffusion-type equations in the Caputo sense with high accuracy are formally retrieved. Based on orthogonal bivariate Jacobi polynomials and their operational matrices, a sparse algebraic system is generated which makes implementing the proposed approach easy. An error bound is computed for the residual function by proving some theorems. To illustrate the accuracy and efficiency of the scheme, several illustrative examples are considered. The results demonstrate the efficiency of the present method compared to those achieved by the Legendre and Lucas multi-wavelet methods and the Crank-Nicolson compact method.
Keywords:
Variable-order time-fractional diffusion-type equations
Pseudo-perational matrix
Shifted Jacobi polynomials
Caputo derivative
Error bound

Journal

Journal of Thermal Analysis and Calorimetry cover
Journal of Thermal Analysis and Calorimetry
IF:
3.1
Papers:
1.8W
Citations:
3.2W

Organization

C
Cankaya University
Scholars:
742
Papers: 845
Citations: 8
N
near east university
Scholars:
1.9K
Papers: 1.8K
Citations: 4