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Research Article | Open Access

Analysis and simulation of the effect of fractional parameters on dynamic behavior for a fractional-in-time three-species reaction-diffusion model

College of Civil Engineering, Inner Mongolia University of Technology, Hohhot 010051, China
Production and Operation Center, CCCC Comprehensive Planning and Design Institute Co. Ltd., Beijing 100024, China
College of Intelligent Science and Technology, Inner Mongolia University of Technology, Hohhot 010080, China
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Abstract

This paper investigates a three-species reaction-diffusion model with fractional-order derivatives and proposes an innovative numerical method for its simulation. The method integrates an optimized Grünwald-Letnikov discretization scheme, enhanced by a short-memory principle, with a high-order accurate nine-point compact difference scheme, enabling an efficient and stable solution of fractional operators. Rigorous convergence and stability analyses confirm the theoretical reliability of the algorithm. Through stability and Turing bifurcation analyses, the study systematically reveals the regulatory mechanism of the fractional-order exponent on the dynamic behavior of the system. The numerical results demonstrate that the present method accurately captures the effect of fractional derivatives on the formation process of spatial patterns.

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Networks and Heterogeneous Media
Pages 426-445

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Cite this article:
Zhang HL, Li XY, Li ZY. Analysis and simulation of the effect of fractional parameters on dynamic behavior for a fractional-in-time three-species reaction-diffusion model. Networks and Heterogeneous Media, 2026, 21(2): 426-445. https://doi.org/10.3934/nhm.2026020

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Received: 24 January 2026
Revised: 03 March 2026
Accepted: 16 March 2026
Published: 15 June 2026
©2026 the Author(s), licensee AIMS Press.

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