Average Boiling and Condensation Heat Transfer Coefficients of the Zeotropic Refrigerant Mixture R22/R142b in a Coaxial Tube-in-Tube Heat Exchanger

Author:

Meyer J. P.1,Bukasa J. M.1,Kebonte S. A.1

Affiliation:

1. Department of Mechanical and Manufacturing Engineering, Rand Afrikaans University, Laboratory for Energy, PO Box 524, Auckland Park, 2006, Johannesburg, South Africa

Abstract

Average boiling and condensation heat transfer coefficients were determined experimentally for a coaxial tube-in-tube heat exchanger used in hot water heat pumps. During manufacturing, the heat exchanger geometry used for the experiments changed from round tubes to elliptical tubes as no spacers were used to keep the inner tube from touching the outer tube. The refrigerant used was two different mixtures of R22 with R142b in mass ratios of 80 percent/20 percent and 60 percent/40 percent. The results were compared to theoretical results for straight tubes. It was concluded that the theoretical modes do not predict the heat transfer coefficients very well in coaxial tube-in-tube heat exchangers where the annulus touches the inside of the outer tube. [S0022-1481(00)01001-X]

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference17 articles.

1. Kruse, H. H., and Tiedemann, T., 1997, “Experience With HC Refrigerants and Projections for Future Applications, Current and Projected Use of Refrigerants in Europe,” Refrigerants for the 21st Century, ASHRAE/NIST Refrigerants Conference, Gaithersburg, MD, pp. 44–56.

2. Meyer, J. P., and Greyvenstein, G. P. 1991, “Hot Water for Homes in South Africa,” Energy Int. J. 16, pp. 1039–1044.

3. Meyer, J. P. and Greyvenstein, G. P. 1992, “Hot Water for Large Residential Units, Hospitals and Laundries with Heat Pumps in South Africa: A Techno-economic Analysis,” Energy Convers. Manage. 33, No. 2. pp. 135–143.

4. Smit, F. J. and Meyer, J. P., 1998, “Investigation of the Potential Effect of Zeotropic Refrigerant Mixture on Performance of a Hot-Water Heat Pump,” ASHRAE Trans., 104, pp. 387–394.

5. Johannsen, A. F. B., 1992, “Potential of Non-azeotropic Refrigerant Mixtures for Water-Heating Heat Pumps in South Africa,” Department of Mineral and Energy Affairs, Pretoria, South Africa, Report No. ED 8807.

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