Two kinds of numerical algorithms for ultra-slow diffusion equations
Abstract
In this article, two kinds of numerical algorithms are derived for the ultra-slow (or superslow) diffusion equation in one and two space dimensions, where the ultra-slow diffusion is characterized by the Caputo-Hadamard fractional derivative of order . To describe the spatial interaction, the Riesz fractional derivative and the fractional Laplacian are used in one and two space dimensions, respectively. The Caputo-Hadamard derivative is discretized by two typical approximate formulae, i.e., L2-1 and L1-2 methods. The spatial fractional derivatives are discretized by the 2-nd order finite difference methods. When L2-1 discretization is used, the derived numerical scheme is unconditionally stable with error estimate for all , in which and are temporal and spatial stepsizes, respectively. When L1-2 discretization is used, the derived numerical scheme is stable with error estimate for . The illustrative examples displayed are in line with the theoretical analysis.
Cite
@article{arxiv.2304.13966,
title = {Two kinds of numerical algorithms for ultra-slow diffusion equations},
author = {Min Cai and Changpin Li and Yu Wang},
journal= {arXiv preprint arXiv:2304.13966},
year = {2023}
}