Numerical analysis for the time distributed-order and Riesz space fractional diffusions on bounded domains
Data(s) |
2015
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Resumo |
Subdiffusion equations with distributed-order fractional derivatives describe some important physical phenomena. In this paper, we consider the time distributed-order and Riesz space fractional diffusions on bounded domains with Dirichlet boundary conditions. Here, the time derivative is defined as the distributed-order fractional derivative in the Caputo sense, and the space derivative is defined as the Riesz fractional derivative. First, we discretize the integral term in the time distributed-order and Riesz space fractional diffusions using numerical approximation. Then the given equation can be written as a multi-term time–space fractional diffusion. Secondly, we propose an implicit difference method for the multi-term time–space fractional diffusion. Thirdly, using mathematical induction, we prove the implicit difference method is unconditionally stable and convergent. Also, the solvability for our method is discussed. Finally, two numerical examples are given to show that the numerical results are in good agreement with our theoretical analysis. |
Formato |
application/pdf |
Identificador | |
Publicador |
Oxford University Press |
Relação |
http://eprints.qut.edu.au/82691/1/P8_IMAMAT-2013-167R1.pdf DOI:10.1093/imamat/hxu015 Ye, H., Liu, F., Anh, V., & Turner, I. (2015) Numerical analysis for the time distributed-order and Riesz space fractional diffusions on bounded domains. IMA Journal of Applied Mathematics, 80(3), pp. 825-838. |
Direitos |
Copyright 2014 Oxford University Press |
Fonte |
ARC Centre of Excellence for Mathematical & Statistical Frontiers (ACEMS); School of Mathematical Sciences; Science & Engineering Faculty |
Palavras-Chave | #010204 Dynamical Systems in Applications #010300 NUMERICAL AND COMPUTATIONAL MATHEMATICS |
Tipo |
Journal Article |