Experimental investigation of exergy, exergoenvironmental and exergoenviroeconomic analysis of the heat pump system

被引:0
作者
A. Yıldız
R. Yıldırım
机构
[1] Uşak University,Department of Mechanical Engineering, Faculty of Engineering
[2] Burdur Mehmet Akif Ersoy University,Department of Electricity and Energy, Bucak Emin Gulmez Technical Sciences Vocational School
来源
International Journal of Environmental Science and Technology | 2022年 / 19卷
关键词
Alternative refrigerants; Exergoenviroeconomic; Exergoenvironmental; Exergy; Global warming; Heat pump;
D O I
暂无
中图分类号
学科分类号
摘要
In this work, R134a and its alternatives refrigerant (R513A and R1234yf) have been experimentally investigated in a heat pump system. The exergy and environmental analyzes of refrigerants were performed for the heat pump. The new methods such as exergoenvironmental and exergoenviroeconomic were used to perform environmental analysis of the heat pump. No study was found in the literature on the application of these methods to heat pump systems using R134a, R513A and R1234yf. Therefore, this study is different from those that have already been carried out and will make an important contribution to the literature. When used R134a R513A, and R1234yf the exergy destruction of components of the heat pump is similar and comparable. The most exergy destruction for all refrigerants was seen in the compressor. At − 10 °C evaporator temperature, the exergy efficiency of R513A and R1234yf is 5.83% and 11.48% and higher than R134a, respectively. The exergy efficiency of R513A and R1234yf is 8.38% and 2.72% and higher than R134a, respectively, at − 5 °C evaporator temperature. The exergy efficiency of R513A and R1234yf is lower than R134a at 0 °C evaporator temperatures. At 0 °C evaporator temperature, the exergy efficiency of R513A and R1234yf is 9.69% and 2.28% and lower than R134a, respectively. So, according to the results of exergy (thermodynamics second law) analysis, R1234yf and R513A refrigerants which have low global warming potential rates are being used as a substitute to R134a, especially at low evaporator temperatures.
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页码:10737 / 10746
页数:9
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  • [1] Afshari F(2016)Optimal charge amount for different refrigerants in air-to-water heat pumps Iran J Sci Technol Trans Mech Eng 40 325-335
  • [2] Comakli O(2018)Exergoeconoenvironmental analysis as a new concept for developing thermodynamically, economically, and environmentally sound energy conversion systems J Clean Prod 187 190-204
  • [3] Adiguzel N(2018)Consolidating exergoeconomic and exergoenvironmental analyses using the emergy concept for better understanding energy conversion systems J Clean Prod 172 696-708
  • [4] Karagoz S(2017)An experimental investigation of the energetic performances of HFO1234yf and its binary mixtures with HFC134a in a household refrigerator Int J Refrig 76 109-117
  • [5] Aghbashlo M(2018)HFOs and their binary mixtures with HFC134a working as drop-in refrigerant in a household refrigerator: energy analysis and environmental impact assessment Appl Therm Eng 141 226-233
  • [6] Rosen MA(2016)Assessing the environmental sustainability of electricity generation in Turkey on a life cycle basis Energies 9 31-161
  • [7] Aghbashlo M(2015)Novel approaches to exergy and economy based enhanced environmental analyses for energy systems Energy Convers Manag 89 156-492
  • [8] Rosen MA(2017)Energy, exergy, environmental, enviroeconomic, exergoenvironmental (EXEN) and exergoenviroeconomic (EXENEC) analyses of solar collectors Renew Sustain Energy Rev 69 488-680
  • [9] Aprea C(2020)Experimental evaluation of an automotive heat pump system with R1234yf as an alternative to R134a Arab J Sci Eng 45 3-218
  • [10] Greco A(2019)Energy, exergy, exergoeconomic and enviroeconomic (4E) evaluation of a new integration of solar still with photovoltaic panel J Clean Prod 233 665-1207