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- W3156743416 abstract "• The proposed scheme is second order accurate, unconditionally energy stable, efficient and easy to implement. • All nonlinear terms can be treated semi-explicitly, and one only needs to solve a linear system at each time step. • We verify numerically that our schemes are of second order accuracy in time and present ample 2D and 3D numerical tests. In this paper, we consider numerical approximations for solving the hydrodynamically coupled three components Cahn-Hilliard phase-field model. By combining the Invariant Energy Quadratization approach with the stabilization technique, and the projection method for the Navier-Stokes equations, we obtain a linear, second-order, and unconditionally energy stable time marching scheme. We present rigorous proofs for the well-posedness of the obtained linear system and the unconditional energy stability. Various 2D and 3D numerical simulations are implemented to demonstrate the stability and accuracy of the scheme thereafter." @default.
- W3156743416 created "2021-04-26" @default.
- W3156743416 creator A5013515385 @default.
- W3156743416 date "2021-08-01" @default.
- W3156743416 modified "2023-10-14" @default.
- W3156743416 title "Efficient and energy stable scheme for the hydrodynamically coupled three components Cahn-Hilliard phase-field model using the stabilized-Invariant Energy Quadratization (S-IEQ) Approach" @default.
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- W3156743416 doi "https://doi.org/10.1016/j.jcp.2021.110342" @default.
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