Energy and exergy study of Freon’s R1234yf, R1234ζε for a vapor compression heat pump unit

Author:

Boris Boris1,Karnaukh Viktoriia1,Biryukov Aleksey2

Affiliation:

1. Donetsk National University of Economics and Trade named after Mykhail Tugan-Baranovsky

2. Donetsk National Technical University

Abstract

This paper has carried out the study of the energy and exergy effectiveness of vapor compression heat pump system for hot water supply. Specific of the study is in the comparative analysis of heat pump systems efficiency which operates on refrigerants of third (hydrofluorocarbons HFC) and fourth (hydrofluoroolefins HFO) generation. The study results have proven the effectiveness of the refrigerant agents of HFO group use.

Publisher

BSTU named after V.G. Shukhov

Reference7 articles.

1. Montreal Protocol on Substances that Deplete the Ozone Layer [Электронный ресурс] / United Nations Environment Program (UNEP). 1997. URL: https://ozone.unep.org/treaties/montreal-protocol/montreal-protocol-substances-deplete-ozone-layer (дата обращения 20.10.2020)., UNEP. (1997). Montreal Protocol on Substances that Deplete the Ozone Layer. Retrieved from https://ozone.unep.org/treaties/montreal-protocol/montreal-protocol-substances-deplete-ozone-layer.

2. Kyoto Protocol, Report of the Conference of the Parties, United Nations Framework Convention on Climate Change [Электронный ресурс]. UNFCCC. 1997. URL: https://unfccc.int/documents/2409 (дата обращения 20.10.2020)., UNFCCC. (December 10, 1997). Kyoto Protocol to the United Nations Framework Convention on Climate Change. Retrieved from https://unfccc.int/documents/2409.

3. Трубаев П.А., Гришко Б.М. Тепловые насосы: уч. пос. Белгород: Изд-во БГТУ, 2010. 142 с., Trubaev, P.A., & Grishko, B.M. (2010). Teplovye nasosy [Heat Pump]. Belgorod: Izd-vo BGTU [In Russian].

4. Trubaev P.A. Exergy analysis of thermal processes in the building materials industry. Theoretical Foundations of Chemical Engineering. 2006. Vol. 40(2). P. 175–182., Trubaev, P.A. (2006). Exergy analysis of thermal processes in the building materials industry. Theoretical Foundations of Chemical Engineering, 40(2), 175–182. Available: https://doi.org/10.1134/s0040579506020102

5. Comparative analysis of different refrigerant using in the high temperature vapor-compression heat pump / V.V. Karnaukh, V.A. Mazur, A.B. Biryukov, К.A. Rzhesik. International Journal of Energy for a Clean Environment. 2017. Vol. 18(3). Р. 161-174., Karnaukh V.V., Mazur V.A., Biryukov A.B., & Rzhesik K.A. (2017). Comparative analysis of different refrigerant using in the high temperature vapor-compression heat pump. International Journal of Energy for a Clean Environment, 18(3), 161-174. Available: http://doi.org/10.1615/InterJEnerCleanEnv.2017022821

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