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Journal article

Application of the group contribution volume translated Peng-Robinson equation of state to new commercial refrigerant mixtures

From

National Institute of Standards and Technology1

University of Liege2

Thermal Energy, Department of Mechanical Engineering, Technical University of Denmark3

Department of Mechanical Engineering, Technical University of Denmark4

KU Leuven5

This work evaluates the performance of the group contribution volume translated Peng-Robinson model when predicting the vapor-liquid equilibrium and single phase densities of 28 commercial refrigerant mixtures with low global warming potential and zero ozone depletion potential. Cubic equations of state, and particularly the Peng-Robinson equation of state, are widely used in the refrigeration industry due to their easy applicability for new substances, and their low computational time, although generally lower prediction accuracies must be expected compared to multiparameter equations of state.

The group contribution volume translated Peng-Robinson equation of state combines the Peng-Robinson equation of state with a new attraction term, improved mixing rules using a group contribution approach, and volume translation. The results are compared with the estimates obtained using the non translated Peng-Robinson equation of state, and a multiparameter equation of state.

Language: English
Year: 2019
Pages: 316-328
ISSN: 18792081 and 01407007
Types: Journal article
DOI: 10.1016/j.ijrefrig.2019.04.014
ORCIDs: 0000-0003-1091-9080 , Mondejar, M. E. and Haglind, F.

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