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An Improved Computational Method for the Calculation of Mixture Liquid-Vapor Critical Points.

Authors :
Dimitrakopoulos, Panagiotis
Jia, Wenlong
Li, Changjun
Source :
International Journal of Thermophysics; May2014, Vol. 35 Issue 5, p865-889, 25p
Publication Year :
2014

Abstract

Knowledge of critical points is important to determine the phase behavior of a mixture. This work proposes a reliable and accurate method in order to locate the liquid-vapor critical point of a given mixture. The theoretical model is developed from the rigorous definition of critical points, based on the SRK equation of state (SRK EoS) or alternatively, on the PR EoS. In order to solve the resulting system of $$C+2$$ nonlinear equations, an improved method is introduced into an existing Newton-Raphson algorithm, which can calculate all the variables simultaneously in each iteration step. The improvements mainly focus on the derivatives of the Jacobian matrix, on the convergence criteria, and on the damping coefficient. As a result, all equations and related conditions required for the computation of the scheme are illustrated in this paper. Finally, experimental data for the critical points of 44 mixtures are adopted in order to validate the method. For the SRK EoS, average absolute errors of the predicted critical-pressure and critical-temperature values are 123.82 kPa and 3.11 K, respectively, whereas the commercial software package Calsep PVTSIM's prediction errors are 131.02 kPa and 3.24 K. For the PR EoS, the two above mentioned average absolute errors are 129.32 kPa and 2.45 K, while the PVTSIM's errors are 137.24 kPa and 2.55 K, respectively. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0195928X
Volume :
35
Issue :
5
Database :
Complementary Index
Journal :
International Journal of Thermophysics
Publication Type :
Academic Journal
Accession number :
97241758
Full Text :
https://doi.org/10.1007/s10765-014-1680-7