On the convergence and efficiency of splitting schemes for the Cahn-Hilliard-Biot model

Fuente: arXiv
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Main Authors: Riethmüller, Cedric, Storvik, Erlend
Format: Preprint
Published: 2026
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author Riethmüller, Cedric
Storvik, Erlend
author_facet Riethmüller, Cedric
Storvik, Erlend
contents In this paper, we present a novel solution strategy for the Cahn-Hilliard-Biot model, a three-way coupled system that features the interplay of solid phase separation, fluid dynamics, and elastic deformations in porous media. It is a phase-field model that combines the Cahn-Hilliard regularized interface equation and Biot's equations of poroelasticity. Solving the system poses significant challenges due to its coupled, nonlinear, and non-convex nature. The main goal of this work is to provide a consistent and efficient solution strategy. With this in mind, we introduce a semi-implicit time discretization such that the resulting discrete system is equivalent to a convex minimization problem. Then, using abstract theory for convex problems, we prove the convergence of an alternating minimization method to the time-discrete system. The solution strategy is relatively flexible in terms of spatial discretization, although we require standard inverse inequalities for the guaranteed convergence of the alternating minimization method. Finally, we perform some numerical experiments that show the promise of the proposed solution strategy, both in terms of efficiency and robustness.
format Preprint
id arxiv_https___arxiv_org_abs_2601_22854
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle On the convergence and efficiency of splitting schemes for the Cahn-Hilliard-Biot model
Riethmüller, Cedric
Storvik, Erlend
Numerical Analysis
In this paper, we present a novel solution strategy for the Cahn-Hilliard-Biot model, a three-way coupled system that features the interplay of solid phase separation, fluid dynamics, and elastic deformations in porous media. It is a phase-field model that combines the Cahn-Hilliard regularized interface equation and Biot's equations of poroelasticity. Solving the system poses significant challenges due to its coupled, nonlinear, and non-convex nature. The main goal of this work is to provide a consistent and efficient solution strategy. With this in mind, we introduce a semi-implicit time discretization such that the resulting discrete system is equivalent to a convex minimization problem. Then, using abstract theory for convex problems, we prove the convergence of an alternating minimization method to the time-discrete system. The solution strategy is relatively flexible in terms of spatial discretization, although we require standard inverse inequalities for the guaranteed convergence of the alternating minimization method. Finally, we perform some numerical experiments that show the promise of the proposed solution strategy, both in terms of efficiency and robustness.
title On the convergence and efficiency of splitting schemes for the Cahn-Hilliard-Biot model
topic Numerical Analysis
url https://arxiv.org/abs/2601.22854