International audienceThis paper describes an EoS/GE approach based on cubic equations of state making reference to low pressure GE models derived from the lattice fluid theory of Guggenheim. The proposed method does not present the theoretical problems encountered with the literature reference states (infinite pressure of Huron-Vidal, zero pressure of Michelsen and constant packing fraction of Péneloux), namely the description of the alpha function with combinatorial terms derived from both the excess Gibbs energy model and the EoS. The main advantage of the proposed method is to successfully account for the size-asymmetry of mixture components and to improve the results obtained with the Wong-Sandler mixing rule. Comparisons are performed...
[[abstract]]©1992 Wiley - A new mixing rule developed for cubic equations of state equates the exces...
A multiphase, multicomponent equation-of-state (EOS) model based on first principles of statistical ...
Equations of State (EoS) live at the heart of all thermodynamic calculations in chemical engineering...
International audienceThe purpose of this study is to propose a simple cubic equation of state for t...
International audienceThe capabilities of cubic Equations of State (EoS) in the correlation and the ...
International audienceThe topic of the present work is the development of a simple model for the des...
This study dealt with the prediction and correlation of vapor-liquid equilibria behavior of nonideal...
An empirical cubic equation of state(EOS) was obtained by truncating the virial expansion in recipro...
AbstractThe constant pressure–temperature (P–T) flash plays an important role in the modelling of fl...
Numerous improvements have been proposed for common cubic equations of state such as Peng-Robinson a...
A new three constant equation of state for fluids and fluid mixtures has been proposed. The equation...
International audienceA new algorithm is proposed for calculating phase equilibria in binary systems...
This work uses a preexisting, noncubic EOS to predict polar/nonpolar pure components. This EOS uses ...
Cubic equations of state (EOSs) are widely used to model the thermodynamic properties of pure fluids...
Abstract The ideal gas equation of state (EOS) model is a well-known low-density limiting model. Rec...
[[abstract]]©1992 Wiley - A new mixing rule developed for cubic equations of state equates the exces...
A multiphase, multicomponent equation-of-state (EOS) model based on first principles of statistical ...
Equations of State (EoS) live at the heart of all thermodynamic calculations in chemical engineering...
International audienceThe purpose of this study is to propose a simple cubic equation of state for t...
International audienceThe capabilities of cubic Equations of State (EoS) in the correlation and the ...
International audienceThe topic of the present work is the development of a simple model for the des...
This study dealt with the prediction and correlation of vapor-liquid equilibria behavior of nonideal...
An empirical cubic equation of state(EOS) was obtained by truncating the virial expansion in recipro...
AbstractThe constant pressure–temperature (P–T) flash plays an important role in the modelling of fl...
Numerous improvements have been proposed for common cubic equations of state such as Peng-Robinson a...
A new three constant equation of state for fluids and fluid mixtures has been proposed. The equation...
International audienceA new algorithm is proposed for calculating phase equilibria in binary systems...
This work uses a preexisting, noncubic EOS to predict polar/nonpolar pure components. This EOS uses ...
Cubic equations of state (EOSs) are widely used to model the thermodynamic properties of pure fluids...
Abstract The ideal gas equation of state (EOS) model is a well-known low-density limiting model. Rec...
[[abstract]]©1992 Wiley - A new mixing rule developed for cubic equations of state equates the exces...
A multiphase, multicomponent equation-of-state (EOS) model based on first principles of statistical ...
Equations of State (EoS) live at the heart of all thermodynamic calculations in chemical engineering...