Computational simulation of refrigerant properties using a new equation of state.
Author(s) : SHAFEI M. al-
Summary
The paper pays attention to the question of calculating the thermodynamic properties of refrigerants and refrigerant mixtures using a modified Carnahan-Starling-De Santis method developed by the author in 1995 and its use to simulate cooling cycles. Within this context the questions of thermodynamic equilibrium of the liquid-vapour phases are considered.
Details
- Original title: Computational simulation of refrigerant properties using a new equation of state.
- Record ID : 2002-1723
- Languages: English
- Source: Compressors 2001: 4th international conference on compressors and coolants. The almanac of proceedings of the conference.
- Publication date: 2001/09/26
- Document available for consultation in the library of the IIR headquarters only.
Links
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Indexing
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Computational simulation of refrigerant propert...
- Author(s) : SHAFEI M. al-
- Date : 2001/11/22
- Languages : English
- Source: Strojné inzinierstvo 2001. Zborník referátov z medzinárodnej konferencie./ Mechanical Engineering 2001. Proceedings.
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Calculation of refrigerant properties by linear...
- Author(s) : CORBERÁN J. M., GONZÁLVEZ J., FUENTES D.
- Date : 2005/08/02
- Languages : English
- Source: Commercial Refrigeration. Thermophysical Properties and Transfer Processes of Refrigerants. Proceedings of the IIR International Conferences.
- Formats : PDF
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Property estimation for "new" refrigerants.
- Author(s) : LOVATT S. J., CHADDERTON T.
- Date : 1996/02/11
- Languages : English
- Source: Refrigeration, Climate Control and Energy Conservation.
- Formats : PDF
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Prediction of some thermodynamic properties of ...
- Author(s) : TZOKOV L., NACHEV N.
- Date : 2000
- Languages : English
- Source: Advances in the Refrigeration Systems, Food Technologies and Cold Chain
- Formats : PDF
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The importance of thermophysical properties in ...
- Author(s) : ASSAEL M. J.
- Date : 2001
- Languages : English
- Source: Energy and the environment: technological challenges for the future.
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