We show that by including thermodynamic functions derived from a chosen free energy in a lattice-Boltzmann simulation of fluid how it is possible to ensure that the fluid relaxes to a well-defined equlilibrium corresponding to the minimum of the input free energy. Two examples are given of phase separation in a binary fluid: bulk two-phase coexistence and a lamellar phase stabilised by a competition between negative surface tension and positive curvature energy. The lattice-Boltzmann framework simulates the Navier-Stokes equations of fluid flow and hence allows investigation of the effects of hydrodynamics on the kinetics of phase separation and on the rheology of the ordered structures
We introduce a lattice Boltzmann model for simulating an immiscible-binary-fluid mixture. Our col...
The entropic multi-relaxation lattice Boltzmann method is extended to two-phase systems following th...
This paper concerned with the simulation of two phase fluid flows in two dimensions using lattice Bo...
We present the details of a lattice Boltzmann approach to phase separation in nonideal one- and twoc...
We use a lattice Boltzmann method to study pattern formation in chemically reactive binary fluids in...
Lattice Boltzmann simulations an used to investigate spinodal decomposition in a two-dimensional ...
This thesis describes investigations of several complex fluid effects., including hydrodynamic spino...
The lattice Boltzmann equation is often promoted as a numerical simulation tool that is particularly...
We apply lattice Boltzmann method to study the phase separation of a two-dimensional binary fluid mi...
A lattice Boltzmann model to simulate phase separation and two-phase flow is proposed. The nonideal ...
We propose a mean-field free energy approach to simulate multi- component fluids. The model has been...
A lattice Boltzmann algorithm was developed to investigate the phase separation process of a binary ...
This thesis deals with the simulation of the phase separation of two phase flow. The lattice Boltzma...
We study both the dynamics of dissolution of an equilibrium interface and phase separation in two...
In this paper, we propose a new lattice Boltzmann model for two-phase flows pertinent to thermal non...
We introduce a lattice Boltzmann model for simulating an immiscible-binary-fluid mixture. Our col...
The entropic multi-relaxation lattice Boltzmann method is extended to two-phase systems following th...
This paper concerned with the simulation of two phase fluid flows in two dimensions using lattice Bo...
We present the details of a lattice Boltzmann approach to phase separation in nonideal one- and twoc...
We use a lattice Boltzmann method to study pattern formation in chemically reactive binary fluids in...
Lattice Boltzmann simulations an used to investigate spinodal decomposition in a two-dimensional ...
This thesis describes investigations of several complex fluid effects., including hydrodynamic spino...
The lattice Boltzmann equation is often promoted as a numerical simulation tool that is particularly...
We apply lattice Boltzmann method to study the phase separation of a two-dimensional binary fluid mi...
A lattice Boltzmann model to simulate phase separation and two-phase flow is proposed. The nonideal ...
We propose a mean-field free energy approach to simulate multi- component fluids. The model has been...
A lattice Boltzmann algorithm was developed to investigate the phase separation process of a binary ...
This thesis deals with the simulation of the phase separation of two phase flow. The lattice Boltzma...
We study both the dynamics of dissolution of an equilibrium interface and phase separation in two...
In this paper, we propose a new lattice Boltzmann model for two-phase flows pertinent to thermal non...
We introduce a lattice Boltzmann model for simulating an immiscible-binary-fluid mixture. Our col...
The entropic multi-relaxation lattice Boltzmann method is extended to two-phase systems following th...
This paper concerned with the simulation of two phase fluid flows in two dimensions using lattice Bo...