We present a new kinetic Monte Carlo scheme, as an alternative to the Gibbs ensemble Monte Carlo (GEMC) method, to determine vapour–liquid equilibria using a canonical ensemble in a system composed of two boxes. To illustrate the method, we have tested it with two systems: (1) argon over a range of temperatures from below the triple point to close to the critical point; (2) methane and ethane mixtures of various compositions at 180\ua0K. The advantage of the new scheme is that chemical potentials of all components are accurately determined in both boxes. In particular, the chemical potential in the liquid box is determined much more accurately than with the Widom method employed in conventional GEMC simulations
We investigate the consistency of the simulation methodology for fluid phase equilibria and mixture ...
Monte Carlo (MC) simulations in ensembles with a fixed chemical potential or fugacity, for example t...
We present a novel application of kinetic Monte Carlo (k. MC) to describe vapour-liquid equilibria (...
Kinetic Monte Carlo (kMC) simulations were carried out to describe the vapour-liquid equilibria of a...
Canonical kinetic Monte Carlo (C-kMC) simulations have been carried out to assess their feasibility ...
A new scheme for Monte Carlo simulation, Bin-CMC, that was introduced recently by Fan et al. (C. Fan...
A kinetic Monte Carlo (kMC) scheme in the NPT ensemble (constant number of molecules, pressure and t...
Three new Monte Carlo algorithms for determining the conditions of phase coexistence are studied. Go...
We introduce an alternative method to perform free energy calculations for mixtures at multiple temp...
Abstract: A rejection-free methodology-based kinetic Monte Carlo (kMC) method has been developed in ...
We describe algorithms for the recently developed Bin-Monte Carlo (Bin-MC) method (Fan et al., 2012)...
We present a method based on kinetic Monte Carlo (kMC) to determine the chemical potential, Helmholt...
We present preliminary canonical molecular dynamics (MD) and Gibbs ensemble Monte Carlo (GEMC) resul...
An overview of the recent developments in molecular computer simulation techniques used to calculate...
An expression for the chemical potential in the Gibbs ensemble is derived. For finite system sizes t...
We investigate the consistency of the simulation methodology for fluid phase equilibria and mixture ...
Monte Carlo (MC) simulations in ensembles with a fixed chemical potential or fugacity, for example t...
We present a novel application of kinetic Monte Carlo (k. MC) to describe vapour-liquid equilibria (...
Kinetic Monte Carlo (kMC) simulations were carried out to describe the vapour-liquid equilibria of a...
Canonical kinetic Monte Carlo (C-kMC) simulations have been carried out to assess their feasibility ...
A new scheme for Monte Carlo simulation, Bin-CMC, that was introduced recently by Fan et al. (C. Fan...
A kinetic Monte Carlo (kMC) scheme in the NPT ensemble (constant number of molecules, pressure and t...
Three new Monte Carlo algorithms for determining the conditions of phase coexistence are studied. Go...
We introduce an alternative method to perform free energy calculations for mixtures at multiple temp...
Abstract: A rejection-free methodology-based kinetic Monte Carlo (kMC) method has been developed in ...
We describe algorithms for the recently developed Bin-Monte Carlo (Bin-MC) method (Fan et al., 2012)...
We present a method based on kinetic Monte Carlo (kMC) to determine the chemical potential, Helmholt...
We present preliminary canonical molecular dynamics (MD) and Gibbs ensemble Monte Carlo (GEMC) resul...
An overview of the recent developments in molecular computer simulation techniques used to calculate...
An expression for the chemical potential in the Gibbs ensemble is derived. For finite system sizes t...
We investigate the consistency of the simulation methodology for fluid phase equilibria and mixture ...
Monte Carlo (MC) simulations in ensembles with a fixed chemical potential or fugacity, for example t...
We present a novel application of kinetic Monte Carlo (k. MC) to describe vapour-liquid equilibria (...