Decoupled and energy stable schemes for phase-field surfactant model based on mobility operator splitting technique
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Publication:6664862
DOI10.1016/j.cam.2024.116365MaRDI QIDQ6664862
Chenxi Wang, Nan Lu, Lun Zhang, Zhen Zhang
Publication date: 16 January 2025
Published in: Journal of Computational and Applied Mathematics (Search for Journal in Brave)
Multiphase and multicomponent flows (76Txx) Numerical methods for partial differential equations, initial value and time-dependent initial-boundary value problems (65Mxx) Incompressible viscous fluids (76Dxx)
Cites Work
- Unnamed Item
- Analysis of improved Lattice Boltzmann phase field method for soluble surfactants
- An energy-stable finite-difference scheme for the binary fluid-surfactant system
- Simulating binary fluid-surfactant dynamics by a phase field model
- Phase-field modeling droplet dynamics with soluble surfactants
- Numerical approximations of Allen-Cahn and Cahn-Hilliard equations
- Surfactants in foam stability: a phase-field model
- An efficient moving mesh spectral method for the phase-field model of two-phase flows
- Numerical analysis of the Cahn-Hilliard equation with a logarithmic free energy
- Numerical analysis of the Allen-Cahn equation and approximation for mean curvature flows
- On efficient second order stabilized semi-implicit schemes for the Cahn-Hilliard phase-field equation
- Linear, first and second-order, unconditionally energy stable numerical schemes for the phase field model of homopolymer blends
- A conservative Fourier pseudo-spectral method for the nonlinear Schrödinger equation
- Numerical approximations for the Cahn-Hilliard phase field model of the binary fluid-surfactant system
- Calculation of two-phase Navier-Stokes flows using phase-field modeling
- A phase field model for the mixture of two incompressible fluids and its approximation by a Fourier-spectral method
- Arbitrarily high-order linear energy stable schemes for gradient flow models
- Second-order decoupled energy-stable schemes for Cahn-Hilliard-Navier-Stokes equations
- Stability and convergence of Strang splitting. II: Tensorial Allen-Cahn equations
- Stability and convergence of Strang splitting. I: Scalar Allen-Cahn equation
- Unconditionally energy stable and bound-preserving schemes for phase-field surfactant model with moving contact lines
- Efficient, non-iterative, and decoupled numerical scheme for a new modified binary phase-field surfactant system
- A thermodynamically consistent model and its conservative numerical approximation for moving contact lines with soluble surfactants
- Linear and unconditionally energy stable schemes for the binary fluid-surfactant phase field model
- Decoupled energy stable schemes for phase-field vesicle membrane model
- Decoupled energy stable schemes for a phase-field model of two-phase incompressible flows with variable density
- Geometric Numerical Integration
- Microscale tipstreaming in a microfluidic flow focusing device
- Reciprocal Relations in Irreversible Processes. I.
- Reciprocal Relations in Irreversible Processes. II.
- Phase-Field Models for Multi-Component Fluid Flows
- DIFFUSE-INTERFACE METHODS IN FLUID MECHANICS
- On the Cahn–Hilliard Equation with Degenerate Mobility
- TWO-PHASE BINARY FLUIDS AND IMMISCIBLE FLUIDS DESCRIBED BY AN ORDER PARAMETER
- Numerical Approximations for Allen-Cahn Type Phase Field Model of Two-Phase Incompressible Fluids with Moving Contact Lines
- High Order Numerical Simulations for the Binary Fluid--Surfactant System Using the Discontinuous Galerkin and Spectral Deferred Correction Methods
- On Diffuse Interface Modeling and Simulation of Surfactants in Two-Phase Fluid Flow
- Efficient and linear schemes for anisotropic Cahn-Hilliard model using the stabilized-invariant energy quadratization (S-IEQ) approach
- High-order supplementary variable methods for thermodynamically consistent partial differential equations
- Decoupled, energy stable schemes for a phase-field surfactant model
- An improved phase-field algorithm for simulating the impact of a drop on a substrate in the presence of surfactants
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