Summary
Numerical calculations were conducted to get a full understanding of the heat transfer characteristics of carbon dioxide under variable properties conditions. The effects of parameters such as mass flux, pressure, heat flux and tube diameter on heat transfer coefficient and pressure drop were calculated, and the results were discussed from the distribution of thermodynamic properties inside the cross section. A serial of experimental measurements confirm the above results. Large amounts of experimental data were obtained. These results were compared with those of numerical calculation, and a good agreement was found.
Details
- Original title: [In Japanese. / En japonais.]
- Record ID : 2004-1031
- Languages: Japanese
- Source: Transactions of the Japan Society of Refrigerating and Air Conditioning Engineers - vol. 20 - n. 2
- Publication date: 2003
- Document available for consultation in the library of the IIR headquarters only.
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Indexing
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Themes:
Mass transfer;
CO2 - Keywords: Calculation; Measurement; Heat transfer; Thermodynamic property; Expérimentation; Thermodynamic cycle; CO2
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Cooling heat transfer of supercritical carbon d...
- Author(s) : DANG C., HIHARA E.
- Date : 2003
- Languages : Japanese
- Source: Transactions of the Japan Society of Refrigerating and Air Conditioning Engineers - vol. 20 - n. 2
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Heat transfer to supercritical carbon dioxide i...
- Author(s) : WALISCH T., TREPP C.
- Date : 1997/10/02
- Languages : English
- Source: Compression systems with natural working fluids. International R&D on heat pump, air conditioning and refrigerating systems. Workshop proceedings.
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MOLECULAR AND THERMODYNAMIC METHOD OF HEAT TRAN...
- Author(s) : VISHNEV I. P.
- Date : 1988
- Languages : English
- Source: Cryogenics - vol. 28 - n. 11
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Thermophysical Properties and Transfer Processe...
- Organiser : IIF-IIR
- Date : 2001
- Languages : English
- Formats : CD-Rom, PDF
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Heat transfer coefficient of supercritical carb...
- Author(s) : DANG C., HIHARA E.
- Date : 2002/09/17
- Languages : English
- Formats : PDF
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