Thermodynamic properties of mixtures of R-32, R-125, R-134a, and R-152a
A mixture model explicit in Helmholtz energy has been developed that is capable of predicting thermodynamic properties of refrigerant mixtures containing R-32, R-125, R-134a, and R-152a. The Helmholtz energy of the mixture is the sum of the ideal gas contribution, the compressibility (or real gas) c...
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Veröffentlicht in: | International journal of thermophysics 1999-11, Vol.20 (6), p.1629-1638 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | A mixture model explicit in Helmholtz energy has been developed that is capable of predicting thermodynamic properties of refrigerant mixtures containing R-32, R-125, R-134a, and R-152a. The Helmholtz energy of the mixture is the sum of the ideal gas contribution, the compressibility (or real gas) contribution, and the contribution from mixing. The contribution from mixing is given by a single equation that is applied to all mixtures used in this work. The independent variables are the density, temperature, and composition. The model may be used to calculate thermodynamic properties of mixtures, including dew and bubble point properties and critical points, generally within the experimental uncertainties of the available measured properties. It incorporates the most accurate published equation of state for each pure fluid. The estimated uncertainties of calculated properties are plus or minus 0.25% in density, plus or minus 0.5% in the speed of sound, and plus or minus 1% in heat capacities. Calculated bubble point pressures are generally accurate to within plus or minus 1%. |
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ISSN: | 0195-928X 1572-9567 |
DOI: | 10.1023/A:1022667309962 |