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Transcritical CO2 Heat Pump Cycle

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Transcritical CO2 Heat Pump Cycle ( transcritical-co2-heat-pump-cycle )

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Liao, S. M., Zhao, T. S., & Jakobsen, A. (2000). A correlation of optimal heat rejection pressures in transcritical carbon dioxide cycles. Applied Thermal Engineering, 20, 831-841. Lorentzen, G. (1994). Revival of carbon dioxide as a refrigerant. International Journal of Refrigeration, 17, 292-301. Lorentzen, G., & Pettersen, J. (1993). A new, efficient and environmentally benign system for car air-conditioning. International Journal of Refrigeration, 16, 4-12. Müller, N., & Joseph, J. O. (2009). A Closer Look at CO2 as a Refrigerant. ASHRAE Transactions, 115. Nekså, P. (2004). CO2 as Refrigerant for systems in transcritical operation. Principles and Technology status, EcoLibrium, 3, 26-31. Ortiz, T. M., Li, D., & Groll, E. A. (2003). Evaluation of the performance potential of CO2 as a refrigerant in air-to- air air conditioners and heat pumps: system modeling and analysis. ARTI final report(21CR/610), 10030. Qi, P.-C., He, Y.-L., Wang, X.-L., & Meng, X.-Z. (2013). Experimental investigation of the optimal heat rejection pressure for a transcritical CO2 heat pump water heater. Applied Thermal Engineering, 56, 120-125. Robinson, D. M., & Groll, E. A. (1996). Using carbon dioxide in a transcritical vapor compression refrigeration cycle. International Refrigeration and Air Conditioning. Robinson, D. M., & Groll, E. A. (1998). Efficiencies of transcritical CO2 cycles with and without an expansion turbine. International Journal of Refrigeration, 21(7), 577-589. Sarkar, J., Bhattacharyya, S., & & Ramgopal, M. (2009). A transcritical CO2 heat pump for simultaneous water cooling and heating: Test results and model validation. International Journal of Energy Research, 33(1), 100-109. Sarkar, J., Bhattacharyya, S., & Gopal, M. R. (2004). Optimization of a transcritical CO2 heat pump cycle for simultaneous cooling and heating applications. International Journal of Refrigeration, 27, 830-838. Yang, L., Li, H., Cai, S.-W., Shao, L.-L., & Zhang, C.-L. (2015). Minimizing COP loss from optimal high pressure correlation for transcritical CO2 cycle. Applied Thermal Engineering, 89, 656-662. Zhang, W.-J., & Zhang, C.-L. (2011). A correlation-free on-line optimal control method of heat rejection pressures in CO2 transcritical systems. International Journal of Refrigeration, 34, 844-850. ACKNOWLEDGMENT The authors would like to thank Ford Motor Company and James Dyson Foundation for their support for this work. 17th International Refrigeration and Air Conditioning Conference at Purdue, July 9-12, 2018 2643, Page 9

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