Extended many-body potential of Hauschild and Prausnitz for pure HFD-like fluids
We have extended the many-body potential of Hauschild and Prausnitz (1993) in terms of the non-additivity coefficient and density (at different temperatures from liquid phase to supercritical region) for pure fluids. In order to compare our many-body potential with the accurate three-body potentials in the literature, we have performed molecular dynamics simulation to obtain pressure and self-diffusion coefficient values at different temperatures and densities using the two-body HFD-like potential and different three-body potentials. Our results indicated that our extended many-body potential is superior to the three-body potential of Guzman et al. (2011) for the different fluids and is also better than the three-body potential of Wang and Sadus (2006) for some noble gases.
Year of publication: |
2014
|
---|---|
Authors: | Abbaspour, Mohsen ; Naderkhovy, Nasrin |
Published in: |
Physica A: Statistical Mechanics and its Applications. - Elsevier, ISSN 0378-4371. - Vol. 413.2014, C, p. 459-472
|
Publisher: |
Elsevier |
Subject: | Many-body potential | Molecular dynamics simulation | HFD-like fluid |
Saved in:
Online Resource
Saved in favorites
Similar items by subject
-
Zhong, Jie, (2013)
-
Numerical simulation of pool boiling of a Lennard-Jones liquid
Inaoka, Hajime, (2013)
-
Two-regime dynamical behaviour in Lennard–Jones systems: Spectral and rescaled range analysis
Karakasidis, T.E., (2004)
- More ...