A Numerical Method for the Solution of the Two-Dimensional Time-Fractional Cable Equation of Distributed-Order Involving Riesz Space-Fractional Operators
No Thumbnail Available
Date
2026
Journal Title
Journal ISSN
Volume Title
Publisher
Elsevier
Abstract
this paper, we propose an efficient hybrid numerical approach to obtain approximate solutions to the two-dimensional time-fractional cable equation of distributed-order involving Riesz space-fractional operators. This combined numerical approach includes two numerical approaches in time and space directions. The weighted and shifted Gr & uuml;nwald difference numerical method is used to approximate the fractional problem in the time direction, and the fractional compact numerical method is applied in the direction of the space variable. The stability and convergence analyses are studied for the proposed numerical approach. To show the effectiveness of the presented numerical method, some numerical examples are given, and the numerical results for these examples are plotted. Also, this numerical approach is compared with other methods.
Description
Keywords
Cable Equation, Riesz Space-Fractional Operator, Shifted Grinwald Difference Method, Fractional Compact Method, Distributed Order, Stability and Convergence
Turkish CoHE Thesis Center URL
WoS Q
Q1
Scopus Q
N/A
Source
Mathematics and Computers in Simulation
Volume
242
Issue
Start Page
230
End Page
243