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References Oso Hotwater, 2003. Product information, http://www.oso-hotwater.com/. Pettersen, J., Skaugen, G., 1994: Operation of Trans-Critical CO2 Vapour Compression Circuits in Vehicle Air Conditioning. IIR/IIF Confe- rence ”New Applications of Natural Working Fluids in Refrigera- tion and Air Conditioning”. Hannover, Germany, May 10-13. pp. 495-505. ISBN 2-903-633-68-1. Pettersen, J., Aarlien, R., 1997: Progress in CO2 Vapour Compression Systems. 45th Oji International Seminar – New Approach Towards Low Temperature Thermal Engineering without Fluorocarbon Refrigerants. Tamakomai, Hokkaido, Japan. Pettersen, J., Hafner, A., Skaugen, G., 1998: Development of Compact Heat Exchangers for CO2 Air Conditioning Systems. International Journal of Refrigeration. Vol. 21, No. 3, pp. 180-193. Pettersen, J., Hafner, A., Brånås, M., 2000: Some Safety Aspects of CO2 Vapour Compression Systems. IEA Heat Pump Programme Annex 27. Workshop on Selected issues on CO2 as Working Fluid in Com- pression Systems. Trondheim, Norway, Sept. 19-20. Pettersen, J., Rieberer, R., Munkejord, S.T., 2000: Heat Transfer and Pressure Drop Characteristics of Evaporating Carbon Dioxide in Microchannel Tubes. 4th IIR-Gustav Lorentzen Conference on Natural Working Fluids at Purdue. July 25-28, Purdue University, Indiana, USA. pp. 324-332. ISBN 2-913149-16-2. Pettersen, J., 2002: Flow Vaporisation of CO2 in Microchannel Tubes. Part 2: Heat Transfer, Pressure Drop and Correlations. 5th IIR- Gustav Lorentzen Conference on Natural Working Fluids. Guan- zhou, China, Sept. 17-20. pp. 84-91. Preliminary proceedings. Pitla, S.S., Groll, E.A., Ramadhyani, S., 2000: New Correlation for the Heat Transfer Coefficient During In-Tube Cooling of Turbulent Supercritical Carbon Dioxide. 4th IIR-Gustav Lorentzen Confe- rence on Natural Working Fluids at Purdue. July 25-28, Purdue University, Indiana, USA. pp. 270-278. ISBN 2-913149-16-2. Poulsen, C.S., 2001: CO2 as Refrigerant in Heat Pumps. 16th Nordic Refrigeration Conference and 9th Nordic Heat Pump Days. Copen- hagen, Denmark. 241PDF Image | Residential CO2 Heat Pump System for Combined
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CO2 Organic Rankine Cycle Experimenter Platform The supercritical CO2 phase change system is both a heat pump and organic rankine cycle which can be used for those purposes and as a supercritical extractor for advanced subcritical and supercritical extraction technology. Uses include producing nanoparticles, precious metal CO2 extraction, lithium battery recycling, and other applications... More Info
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