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TYPICAL INITIAL OUTPUT OF A CO2 HEAT PUMP

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TYPICAL INITIAL OUTPUT OF A CO2 HEAT PUMP ( typical-initial-output-co2-heat-pump )

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References 1. Bensafi, A. and B. Thonon, Transcritical R744 (CO2) heat pumps, in Technician's Manual. 2007, Centre Technique Des Industries Aérauliques Et Thermiques: Villeurbanne Cedex - France. p. 62. 2. Mohanraj, M., S. Jayaraj, and C. Muraleedharan, Environment friendly alternatives to halogenated refrigerants—A review. International Journal of Greenhouse Gas Control, 2009. 3(1): p. 108-119. 3. Nekså, P., CO2 heat pump systems. International Journal of Refrigeration, 2002. 25(4): p. 421-427. 4. Sarkar, J., S. Bhattacharyya, and M.R. Gopal, Optimization of a transcritical CO2 heat pump cycle for simultaneous cooling and heating applications. International Journal of Refrigeration, 2004. 27(8): p. 830-838. 5. Nekså, P., et al., CO2-heat pump water heater: characteristics, system design and experimental results. International Journal of Refrigeration, 1998. 21(3): p. 172-179. 6. Tamura, T., Y. Yakumaru, and F. Nishiwaki, Experimental study on automotive cooling and heating air conditioning system using CO2 as a refrigerant. International Journal of Refrigeration, 2005. 28(8): p. 1302-1307. 7. Lorentzen, G., Revival of carbon dioxide as a refrigerant. International Journal of Refrigeration, 1994. 17(5): p. 292-301. 8. Hashimoto, K., Technology and Market Development of CO2 Heat Pump Water Heaters (ECO CUTE) in Japan, in Topical article. 2006, IEA Heat Pump Centre Newsletter: Japan. 9. Kim, M.-H., J. Pettersen, and C.W. Bullard, Fundamental process and system design issues in CO2 vapor compression systems. Progress in Energy and Combustion Science, 2004. 30(2): p. 119-174. 10. Austin, B.T. and K. Sumathy, Transcritical carbon dioxide heat pump systems: A review. Renewable and Sustainable Energy Reviews, 2011. 15(8): p. 4013-4029. 11. Huai, X.L., S. Koyama, and T.S. Zhao, An experimental study of flow and heat transfer of supercritical carbon dioxide in multi-port mini channels under cooling conditions. Chemical Engineering Science, 2005. 60(12): p. 3337-3345. 12. Saikawa, M., et al., Development of prototype of CO[2] heat pump water heater for residential use. 2000, Paris, France: Institut international du froid. 13. Agrawal, N. and S. Bhattacharyya, Experimental investigations on adiabatic capillary tube in a transcritical CO2 heat pump system for simultaneous water cooling and heating. International Journal of Refrigeration, 2011. 34(2): p. 476-483. 326

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