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Title: Fully decoupled energy-stable numerical schemes for two-phase coupled porous media and free flow with different densities and viscosities
Authors: Gao, Y
He, X
Lin, T
Lin, Y 
Issue Date: May-2023
Source: ESAIM : mathematical modelling and numerical analysis (ESAIM: M2AN), May-June 2023, v. 57, no. 3, p. 1323-1354
Abstract: In this article, we consider a phase field model with different densities and viscosities for the coupled two-phase porous media flow and two-phase free flow, as well as the corresponding numerical simulation. This model consists of three parts: a Cahn-Hilliard-Darcy system with different densities/viscosities describing the porous media flow in matrix, a Cahn-illiard-Navier-Stokes system with different densities/viscosities describing the free fluid in conduit, and seven interface conditions coupling the flows in the matrix and the conduit. Based on the separate Cahn-Hilliard equations in the porous media region and the free flow region, a weak formulation is proposed to incorporate the two-phase systems of the two regions and the seven interface conditions between them, and the corresponding energy law is proved for the model. A fully decoupled numerical scheme, including the novel decoupling of the Cahn-Hilliard equations through the four phase interface conditions, is developed to solve this coupled nonlinear phase field model. An energy-law preservation is analyzed for the temporal semi-discretization scheme. Furthermore, a fully discretized Galerkin finite element method is proposed. Six numerical examples are provided to demonstrate the accuracy, discrete energy law, and applicability of the proposed fully decoupled scheme.
Keywords: Cahn-Hilliard-Navier-Stokes-Darcy model
Different densities
Energy stability
Fully decoupled
Karstic geometry
Phase-field model
Publisher: EDP Sciences
Journal: ESAIM : mathematical modelling and numerical analysis (ESAIM: M2AN) 
ISSN: 0764-583X
EISSN: 1290-3841
DOI: 10.1051/m2an/2023012
Rights: © The authors. Published by EDP Sciences, SMAI 2023
This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
The following publication Gao, Y., He, X., Lin, T., & Lin, Y. (2023). Fully decoupled energy-stable numerical schemes for two-phase coupled porous media and free flow with different densities and viscosities. ESAIM: Mathematical Modelling and Numerical Analysis, 57(3), 1323-1354 is available at https://doi.org/10.1051/m2an/2023012.
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