Multi-component electro-hydro-thermodynamic model with phase-field method. I: Dielectric
From MaRDI portal
Publication:6497258
DOI10.1016/J.JCP.2024.112907MaRDI QIDQ6497258
Fei Wang, Britta Nestler, Haodong Zhang
Publication date: 6 May 2024
Published in: Journal of Computational Physics (Search for Journal in Brave)
Basic methods in fluid mechanics (76Mxx) Multiphase and multicomponent flows (76Txx) Numerical methods for partial differential equations, initial value and time-dependent initial-boundary value problems (65Mxx)
Cites Work
- An \(H^2\) convergence of a second-order convex-splitting, finite difference scheme for the three-dimensional Cahn-Hilliard equation
- A numerical method for the quasi-incompressible Cahn-Hilliard-Navier-Stokes equations for variable density flows with a discrete energy law
- Simulation of electro-osmotic flow in microchannel with lattice Boltzmann method
- Phase field computations for ternary fluid flows
- A numerical method for solving incompressible viscous flow problems. Reprint
- On a new spatial discretization for a regularized 3D compressible isothermal Navier-Stokes-Cahn-Hilliard system of equations with boundary conditions
- Numerical study of the ternary Cahn-Hilliard fluids by using an efficient modified scalar auxiliary variable approach
- Second-order decoupled energy-stable schemes for Cahn-Hilliard-Navier-Stokes equations
- A coupled LBM-DEM method for simulating the multiphase fluid-solid interaction problem
- Unconditionally stable numerical methods for Cahn-Hilliard-Navier-Stokes-Darcy system with different densities and viscosities
- Efficient numerical scheme for a dendritic solidification phase field model with melt convection
- An energy stable fourth order finite difference scheme for the Cahn-Hilliard equation
- Two-phase electrohydrodynamic simulations using a volume-of-fluid approach
- A ghost fluid, level set methodology for simulating multiphase electrohydrodynamic flows with application to liquid fuel injection
- An energy-stable smoothed particle hydrodynamics discretization of the Navier-Stokes-Cahn-Hilliard model for incompressible two-phase flows
- Two-Phase Fluid Simulation Using a Diffuse Interface Model with Peng--Robinson Equation of State
- A thermodynamically consistent phase-field model for two-phase flows with thermocapillary effects
- Efficient Numerical Solution of Cahn–Hilliard–Navier–Stokes Fluids in 2D
- Sharp-interface limit of the Cahn–Hilliard model for moving contact lines
- Breakup of fluid droplets in electric and magnetic fields
- Contact-line dynamics of a diffuse fluid interface
- A mass‐conserving Level‐Set method for modelling of multi‐phase flows
- Electrohydrodynamics of viscous drops in strong electric fields: numerical simulations
- On fully decoupled MSAV schemes for the Cahn–Hilliard–Navier–Stokes model of two-phase incompressible flows
- Jet and progeny formation in the Rayleigh breakup of a charged viscous drop
- Splitting Schemes for a Navier-Stokes-Cahn-Hilliard Model for Two Fluids with Different Densities
- Response of an emulsion of leaky dielectric drops immersed in a simple shear flow: Drops more conductive than the suspending fluid
- Numerical simulation of deformation/motion of a drop suspended in viscous liquids under influence of steady electric fields
- A three-dimensional small-deformation theory for electrohydrodynamics of dielectric drops
- Convergence of a Decoupled Splitting Scheme for the Cahn–Hilliard–Navier–Stokes System
- Modelling two-phase flow in porous media at the pore scale using the volume-of-fluid method
- The fast scalar auxiliary variable approach with unconditional energy stability for nonlocal Cahn–Hilliard equation
- A thermodynamically consistent diffuse interface model for the wetting phenomenon of miscible and immiscible ternary fluids
This page was built for publication: Multi-component electro-hydro-thermodynamic model with phase-field method. I: Dielectric