Phase Field Modeling and Numerical Algorithm for Two-Phase Dielectric Fluid Flows

05/15/2023
by   Jielin Yang, et al.
0

We develop a method for modeling and simulating a class of two-phase flows consisting of two immiscible incompressible dielectric fluids and their interactions with imposed external electric fields in two and three dimensions. We first present a thermodynamically-consistent and reduction-consistent phase field model for two-phase dielectric fluids. The model honors the conservation laws and thermodynamic principles, and has the property that, if only one fluid component is present in the system, the two-phase formulation will exactly reduce to that of the corresponding single-phase system. In particular, this model accommodates an equilibrium solution that is compatible with the zero-velocity requirement based on physics. This property provides a simpler method for simulating the equilibrium state of two-phase dielectric systems. We further present an efficient numerical algorithm, together with a spectral-element (for two dimensions) or a hybrid Fourier-spectral/spectral-element (for three dimensions) discretization in space, for simulating this class of problems. This algorithm computes different dynamic variables successively in an un-coupled fashion, and involves only coefficient matrices that are time-independent in the resultant linear algebraic systems upon discretization, even when the physical properties (e.g. permittivity, density, viscosity) of the two dielectric fluids are different. This property is crucial and enables us to employ fast Fourier transforms for three-dimensional problems. Ample numerical simulations of two-phase dielectric flows under imposed voltage are presented to demonstrate the performance of the method herein and to compare the simulation results with theoretical models and experimental data.

READ FULL TEXT

page 22

page 24

page 29

page 30

research
04/19/2021

A decoupled, stable, and linear FEM for a phase-field model of variable density two-phase incompressible surface flow

The paper considers a thermodynamically consistent phase-field model of ...
research
01/19/2018

Decoupling schemes for predicting compressible fluid flows

Numerical simulation of compressible fluid flows is performed using the ...
research
01/16/2022

A Cut Finite Element Method for two-phase flows with insoluble surfactants

We propose a new unfitted finite element method for simulation of two-ph...
research
08/29/2017

Coupled Multiphysics Simulations of Charged Particle Electrophoresis for Massively Parallel Supercomputers

The article deals with the multiphysics simulation of electrokinetic flo...
research
02/20/2023

A Projection Method for Compressible Generic Two-Fluid Model

A new projection method for a generic two-fluid model is presented in th...
research
03/12/2021

Modeling and simulation of nuclear architecture reorganization process using a phase field approach

We develop a special phase field/diffusive interface method to model the...
research
12/21/2020

Well-balanced lattice Boltzmann equation for two-phase flows

The standard lattice Boltzmann equation (LBE) method usually fails to ca...

Please sign up or login with your details

Forgot password? Click here to reset