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References Aarlien, R., 2001: On the Design, Efficiency, and Market Potential of Residential Air Conditioning and Heat Pump Units with CO2 as Working Fluid. Doctoral thesis at the Norwegian University of Science and Technology (NTNU), Faculty of Mechanical Engi- neering, Department of Refrigeration and Air Conditioning. Abdoly M.A., Rapp, D., 1982: Theoretical and Experimental Studies of Stratified Thermocline Storage of Hot Water. Energy Conservation Mgmt. Vol. 22, pp. 275-285. Adriansyah, W., 2001: Combined Air-Conditioning and Tap Water Hea- ting Plant Using CO2 as Refrigerant for Indonesian Climate Con- dition. Doctoral thesis at the Norwegian University of Science and Technology (NTNU), Faculty of Mechanical Engineering, Depart- ment of Refrigeration and Air Conditioning. Afjei,T., 1997: Low-Cost Low-Temperature Heating with Heat Pump Systems. IEA Heat Pump Centre Newsletter, Vol. 15, No. 3/1997. pp. 26-28. Banks, R.E., Sharratt, P.N., 1996: Environmental Impacts of the Manu- facture of HFC-134a. Department of Chemistry and Department of Chemical Engineering, UMIST, Manchester, United Kingdom. Brandes, B., Kruse, H., 2000: High Temperature Residential Heat Pump with CO2 as Working Fluid. KI Luft- og Kältetechnik 7/2000. pp. 311-315. Bredesen, A., Aflekt, K., Pettersen, J., Hafner, A., Nekså, P., Skaugen. G., 1997; Studies of CO2 Heat Exchangers and Heat Transfer. IIR / IEA Heat Pump Centre workshop ”CO2 Technology in Refrige- ation, Heat Pump and Air Conditioning Systems”. Trondheim, Norway, May 13-14. Report HPC/WR-19, pp. 329-358. Bredesen, A., Hafner, A., Pettersen, J., Nekså, P., Aflekt, K., 1997: Heat Transfer and Pressure Drop for In-Tube Evaporation of CO2. Int. Conference on Heat Transfer Issues in Natural Refrigerants, College Park, Maryland, USA, 6-7 Nov, pp 1-15. References 237PDF Image | Residential CO2 Heat Pump System for Combined
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