1 |
A hard-core Exp-6 intermolecular potential function for determining virial coefficients of pure nonpolar and slightly-polar molecules Peyrovedin H, Shariati A Fluid Phase Equilibria, 459, 103, 2018 |
2 |
Considering double occupancy of large cages in nitrogen and oxygen hydrates at high pressures Rasoolzadeh A, Shariati A Fluid Phase Equilibria, 434, 107, 2017 |
3 |
Thermodynamic model for predicting equilibrium conditions of clathrate hydrates of noble gases plus light hydrocarbons: Combination of Van der Waals-Platteeuw model and sPC-SAFT EoS Abolala M, Varaminian F Journal of Chemical Thermodynamics, 81, 89, 2015 |
4 |
Thermodynamic modeling of phase equilibrium for gas hydrate in single and mixed refrigerants by using sPC-SAFT equation of state Abolala M, Karamoddin M, Varaminian F Fluid Phase Equilibria, 370, 69, 2014 |
5 |
Experimental measurement of phase equilibrium for gas hydrates of refrigerants, and thermodynamic modeling by SRK, VPT and CPA EOSs Karamoddin M, Varaminian F Journal of Chemical Thermodynamics, 65, 213, 2013 |
6 |
Extending the group contribution concept using kihara potential to perfluorinated n-alkanes CnF2n+2 (n=1-6) for estimating thermophysical properties Oh SK Fluid Phase Equilibria, 288(1-2), 87, 2010 |
7 |
An extension of the group contribution method for estimating thermodynamic and transport properties. Part IV. Noble gas mixtures with polyatomic gases Oh SK Korean Journal of Chemical Engineering, 23(3), 447, 2006 |
8 |
An Extension of the Group Contribution Method for Estimating Thermodynamic and Transport Properties Part II. Polyatomic Gases (F2, Cl2, CS2, H2S, NO and N2O) Oh SK, Park KH Korean Journal of Chemical Engineering, 22(2), 268, 2005 |
9 |
An Extension of the Group Contribution Method for Estimating Thermodynamic and Transport Properties. Part III. Noble Gases Oh SK Korean Journal of Chemical Engineering, 22(6), 949, 2005 |
10 |
Application of Kihara potential model to real non-spherical fluids Chen GJ, Sun CY Chemical Engineering Science, 56(24), 7045, 2001 |