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Research Article | Open Access

An efficient numerical method based on QSC for multi-term variable-order time fractional mobile-immobile diffusion equation with Neumann boundary condition

Jun Liu( )Yue LiuXiaoge YuXiao Ye
Department of Mathematics, China University of Petroleum (East China), Qingdao 266580, China
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Abstract

In this work, we aimed at a kind of multi-term variable-order time fractional mobile-immobile diffusion (TF-MID) equation satisfying the Neumann boundary condition, with fractional orders α m ( t ) for m = 1 , 2 , , P, and introduced a QSC- L 1 + scheme by applying the quadratic spline collocation (QSC) method along the spatial direction and using the L 1 + formula for the temporal direction. This new scheme was shown to be unconditionally stable and convergent with the accuracy O ( τ min { 3 α α ( 0 ) , 2 } + Δ x 2 + Δ y 2 ), where Δ x, Δ y, and τ denoted the space-time mesh sizes. α was the maximum of α m ( t ) over the time interval, and α ( 0 ) was the maximum of α m ( 0 ) in all values of m. The QSC- L 1 + scheme, under certain appropriate conditions on α m ( t ), is capable of attaining a second order convergence in time, even on a uniform space-time grid. Additionally, we also implemented a fast computation approach which leveraged the exponential-sum-approximation technique to increase the computational efficiency. A numerical example with different fractional orders was attached to confirm the theoretical findings.

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Electronic Research Archive
Pages 642-666

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Cite this article:
Liu J, Liu Y, Yu X, et al. An efficient numerical method based on QSC for multi-term variable-order time fractional mobile-immobile diffusion equation with Neumann boundary condition. Electronic Research Archive, 2025, 33(2): 642-666. https://doi.org/10.3934/era.2025030

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Received: 09 November 2024
Revised: 02 January 2025
Accepted: 13 January 2025
Published: 15 February 2025
©2025 the Author(s), licensee AIMS Press.

This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0)