We consider a modified version of the conservative Allen–Cahn phase-field method for tracking material interfaces. By removing the diffusive term and discretizing the advective terms with a first-order upwind scheme, we achieve a substantial reduction in numerical diffusion, resulting in sharper interfaces for a given compression parameter. The resulting scheme is monotone, leading to key numerical properties such as boundedness and convergence to weak entropy solutions. Notably, the new method permits a significantly larger time step compared to standard implementations, especially in multiple spatial dimensions. Numerical tests support these theoretical findings and demonstrate effectiveness and robustness of the new algorithm across a range of multiphase flow problems.

Efficient implementation of the Allen–Cahn phase-field method for material interface tracking

Di Giorgio S.;
2025

Abstract

We consider a modified version of the conservative Allen–Cahn phase-field method for tracking material interfaces. By removing the diffusive term and discretizing the advective terms with a first-order upwind scheme, we achieve a substantial reduction in numerical diffusion, resulting in sharper interfaces for a given compression parameter. The resulting scheme is monotone, leading to key numerical properties such as boundedness and convergence to weak entropy solutions. Notably, the new method permits a significantly larger time step compared to standard implementations, especially in multiple spatial dimensions. Numerical tests support these theoretical findings and demonstrate effectiveness and robustness of the new algorithm across a range of multiphase flow problems.
2025
Istituto di iNgegneria del Mare - INM (ex INSEAN)
Allen–Cahn model
Material interfaces
Multiphase flows
Upwind discretization
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/598806
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