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Pure and Pseudo-pure Fluid Thermophysical Property Evaluation and the Open-Source Thermophysical Property Library CoolProp

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Authors:
  • Bell, Ian H. ;
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    University of Liège
  • Wronski, Jorrit ;
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    Orcid logo0000-0001-8216-4153
    Department of Mechanical Engineering, Technical University of Denmark
  • Quoilin, Sylvain ;
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    University of Liège
  • Lemort, Vincent
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    University of Liège
DOI:
10.1021/ie4033999
Abstract:
Over the last few decades, researchers have developed a number of empirical and theoretical models for the correlation and prediction of the thermophysical properties of pure fluids and mixtures treated as pseudo-pure fluids. In this paper, a survey of all the state-of-the-art formulations of thermophysical properties is presented. The most-accurate thermodynamic properties are obtained from multiparameter Helmholtz-energy-explicit-type formulations. For the transport properties, a wider range of methods has been employed, including the extended corresponding states method. All of the thermophysical property correlations described here have been implemented into CoolProp, an open-source thermophysical property library. This library is written in C++, with wrappers available for the majority of programming languages and platforms of technical interest. As of publication, 110 pure and pseudo-pure fluids are included in the library, as well as properties of 40 incompressible fluids and humid air. The source code for the CoolProp library is included as an electronic annex.
Type:
Journal article
Language:
English
Published in:
Industrial and Engineering Chemistry Research, 2014, Vol 53, Issue 6
Main Research Area:
Science/technology
Publication Status:
Published
Review type:
Peer Review
Submission year:
2014
Scientific Level:
Scientific
ID:
258490372

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