Fractional partial order diffusion equations are a generalization of classical partial differential equations, used to model anomalous diffusion phenomena. When using the implicit Euler formula and the shifted Grnwald formu, it has been shown that the related discretizations lead to a linear system whose coefficient matrix has a Toeplitz-like structure. In this paper we focus our attention on the case of variable diffusion coefficients. Under appropriate conditions, we show that the sequence of the coefficient matrices belongs to the Generalized Locally Toeplitz class and we compute the symbol describing its asymptotic eigenvalue/singular value distribution, as the matrix size diverges. We employ the spectral information for analyzing known methods of preconditioned Krylov and multigrid type, with both positive and negative results and with a look forward to the multidimensional setting. We also propose two new tridiagonal structure preserving preconditioners to solve the resulting linear system, with Krylov methods such as CGNR and GMRES. A number of numerical examples showthat our proposal is more effective than recently used circulant preconditioners.

Donatelli, M., Mazza, M., Serra-Capizzano, S. (2016). Spectral analysis and structure preserving preconditioners for fractional diffusion equations. JOURNAL OF COMPUTATIONAL PHYSICS, 307, 262-279 [10.1016/j.jcp.2015.11.061].

Spectral analysis and structure preserving preconditioners for fractional diffusion equations

Mazza M.;
2016-01-01

Abstract

Fractional partial order diffusion equations are a generalization of classical partial differential equations, used to model anomalous diffusion phenomena. When using the implicit Euler formula and the shifted Grnwald formu, it has been shown that the related discretizations lead to a linear system whose coefficient matrix has a Toeplitz-like structure. In this paper we focus our attention on the case of variable diffusion coefficients. Under appropriate conditions, we show that the sequence of the coefficient matrices belongs to the Generalized Locally Toeplitz class and we compute the symbol describing its asymptotic eigenvalue/singular value distribution, as the matrix size diverges. We employ the spectral information for analyzing known methods of preconditioned Krylov and multigrid type, with both positive and negative results and with a look forward to the multidimensional setting. We also propose two new tridiagonal structure preserving preconditioners to solve the resulting linear system, with Krylov methods such as CGNR and GMRES. A number of numerical examples showthat our proposal is more effective than recently used circulant preconditioners.
2016
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore MAT/08
English
Fractional diffusion equations
Toeplitz matrix
Locally Toeplitz sequence of matrices
Singular value/eigenvalue distribution Preconditioning
Donatelli, M., Mazza, M., Serra-Capizzano, S. (2016). Spectral analysis and structure preserving preconditioners for fractional diffusion equations. JOURNAL OF COMPUTATIONAL PHYSICS, 307, 262-279 [10.1016/j.jcp.2015.11.061].
Donatelli, M; Mazza, M; Serra-Capizzano, S
Articolo su rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/344056
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