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Research Article | Open Access

A fully-decoupled energy stable scheme for the phase-field model of non-Newtonian two-phase flows

Wei Li1Guangying Lv1,2( )
School of Mathematics and Statistics, Nanjing University of Information Science and Technology, Nanjing 210044, China
School of Mathematics and Computational Sciences, Hunan University of Science and Technology, Xiangtan, Hunan 411201, China
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Abstract

In this paper, we first propose a novel fully-decoupled, linear and second-order time accurate scheme to solve the phase-field model of non-Newtonian two-phase flows; the developed scheme is based on a stabilized Scalar Auxiliary Variable (SAV) approach. We strictly prove the unconditional energy stability of the scheme and conduct a numerical simulation to show the accuracy and stability of the proposed scheme. Moreover, we can observe that the parameter r in non-Newtonian fluids can affect spatial patterns during phase transitions, which directly enables us to design and perform optimal control experiments in engineering processes.

CLC number: 65M06, 65M12, 82C26

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AIMS Mathematics
Pages 19385-19396

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Cite this article:
Li W, Lv G. A fully-decoupled energy stable scheme for the phase-field model of non-Newtonian two-phase flows. AIMS Mathematics, 2024, 9(7): 19385-19396. https://doi.org/10.3934/math.2024944

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Received: 16 April 2024
Revised: 14 May 2024
Accepted: 23 May 2024
Published: 15 July 2024
©2024 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)