A Comparison of Fourier Spectral Iterative Perturbation Method and Finite Element Method in Solving Phase-Field Equilibrium Equations
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Publication:5159078
DOI10.4208/CICP.OA-2016-0114zbMath1488.35393MaRDI QIDQ5159078
Zhuo Wang, Long-Qing Chen, Lei Chen, Zhigang Yang, Tiannan Yang, Yanzhou Ji, Pengcheng Song
Publication date: 26 October 2021
Published in: Communications in Computational Physics (Search for Journal in Brave)
phase-fieldcomputational costfinite element method (FEM)numerical implementationFourier spectral iterative perturbation method (FSIPM)
Related Items (5)
A family of second-order energy-stable schemes for Cahn-Hilliard type equations ⋮ Semi-Implicit Spectral Deferred Correction Method Based on the Invariant Energy Quadratization Approach for Phase Field Problems ⋮ Efficient, Accurate and Energy Stable Discontinuous Galerkin Methods for Phase Field Models of Two-Phase Incompressible Flows ⋮ A Novel Strong-Coupling Pseudo-Spectral Method for Numerical Studies of Two-Layer Turbulent Channel Flows ⋮ Efficient local energy dissipation preserving algorithms for the Cahn-Hilliard equation
Cites Work
- Energy stable schemes for Cahn-Hilliard phase-field model of two-phase incompressible flows
- A continuum model of grain boundaries
- An integrated fast Fourier transform-based phase-field and crystal plasticity approach to model recrystallization of three dimensional polycrystals
- An iterative-perturbation scheme for treating inhomogeneous elasticity in phase-field models
- Decoupled, Energy Stable Schemes for Phase-Field Models of Two-Phase Incompressible Flows
- Assessment of smoothed point interpolation methods for elastic mechanics
- A Spectral Iterative Method for the Computation of Effective Properties Of Elastically Inhomogeneous Polycrystals
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