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Performance investigation of some hydro-fluorocarbon refrigerants with low global warming as substitutes to R134a in refrigeration systems

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Abstract

In this study, the performances of R152a, R161, and R1234yf with very low global warming potential were investigated theoretically as alternatives to R134a in vapor compression refrigeration systems. The results obtained showed that the saturation vapor pressures for R152a and R1234yf are very close to that of R134a, which indicates similar properties, while that of R161, between the temperature range of −30 to 40°C, deviated significantly by 49.2%. R152a emerged as the most energy efficient of the investigated refrigerants with average power per ton of refrigeration (PPTR) of 30.5% less than that of R134a. R152a and R161 exhibited a higher volumetric refrigerating capacity (VRC) and coefficient of performance (COP) than R134a. The highest COP was obtained using R152a in the system with an average value of 43.5% higher than that of R134a, while the average COPs for R161 and R1234yf are 4.8% higher and 7.1% lower, respectively. Generally, R152a performed better than the other two alternatives as R134a substitute in that it has similar saturation pressure as R134a, exhibited lowest PPTR, very high VRC, and highest COP. Major system redesign will be required before R161 can be employed as R134a substitute. Also, low performance of R1234yf in terms of PPTR, VRC and COP will increase its indirect contributions to global warming.

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References

  1. Park, K. and Jung, D., Performance of Heat Pumps Charged with R170/R290 Mixture, Appl. Energy, 2009, vol. 86, pp. 2598–2603.

    Article  Google Scholar 

  2. Bhatti, M.S., A Historical Look at Chlorofluorocarbon Refrigerants, ASHRAE Trans., 1999, pp. 1186–1206.

    Google Scholar 

  3. Handbook for International Treaties for Protection of the Ozone Layers, 6th ed., Nairobi, Kenya: United Nation Environment Program (UNEP), 2003.

  4. Bolaji, B.O., Akintunde, M.A., and Falade, T.O., Comparative Analysis of Performance of Three Ozone-Friendly HFC Refrigerants in a Vapor Compression Refrigerator, J. Sust. Energy Envir., 2011, vol. 2, pp. 61–64.

    Google Scholar 

  5. Devotta, S., Padalkar, A.S., and Sane, N.K., Performance Assessment of R22 Window Air Conditioner Retrofitted with R407C, Appl. Therm. Eng., 2005, vol. 25, pp. 2937–2949.

    Article  Google Scholar 

  6. McMullan, J.T., Refrigeration and the Environment Issues and Strategies for the Future, Int. J. Refrig., 2002, vol. 25, pp. 89–99.

    Article  Google Scholar 

  7. Fatouh, M., Ibrahim, T.A., and Mostafa, A., Performance Assessment of a Direct Expansion Air Conditioner Working with R407C as an R22 Alternative, Appl. Therm. Eng., 2010, vol. 30, pp. 127–133.

    Article  Google Scholar 

  8. He, M., Li, T., Liu, Z., and Zhang, Y., Testing of the Mixing Refrigerants R152a/R125 in Domestic Refrigerator, Appl. Therm. Eng., 2005, vol. 25, pp. 1169–1181.

    Article  Google Scholar 

  9. Bolaji, B.O., Performance Investigation of Ozone-Friendly R404A and R507 Refrigerants as Alternatives to R22 in a Window Air-Conditioner, Energy Build., 2011, vol. 43, pp. 3139–3143.

    Article  Google Scholar 

  10. Jain, V., Kachhwaha, S.S., and Mishra, R.S., Comparative Performance Study of Vapor Compression Refrigeration System with R22/R134a/R410A/R407C/M20, Int. J. Energy Envir., 2011, vol. 2, pp. 297–310.

    Google Scholar 

  11. Boumaza, M., Performances Assessment of Natural Refrigerants as Substitutes to CFC and HCFC in Hot Climate, Int. J. Ther. Envir. Eng., 2010, vol. 1, pp. 125–130.

    Article  Google Scholar 

  12. Dalkilic, A.S. and Wongwises, S., A Performance Comparison of Vapour-Compression Refrigeration System Using Various Alternative Refrigerants, Int. Commun. Heat Mass Transfer, 2010, vol. 37, pp. 1340–1349.

    Article  Google Scholar 

  13. Calm, J.M. and Domanski, P.A., R22 Replacement Status, ASHRAE J., 2004, vol. 46, pp. 29–39.

    Google Scholar 

  14. Refrigerant Report, 15th ed., l71065 Sindelfingen, Germany: Bitzer Int., 2012; http://www.bitzer.de, acc. March 8, 2012.

  15. Climate Change 2007: The Scientific Basis, in Contribution of Working Group I to the IPCC Fourth Assessment Report of the International Panel on Climate Change, Cambridge: Cambridge Univ. Press, 2007, p. 212.

  16. Bolaji, B.O., Investigating the Performance of Some Environment-Friendly Refrigerants as Alternative to R12 in Vapour Compression Refrigeration System, PhD Thesis, Department of Mechanical Engineering, Federal University of Technology Akure, Nigeria, 2008.

    Google Scholar 

  17. Kayukawa, Y., A Study of Thermodynamic Properties for Novel Refrigerants with Rapid and Precise Density Measurement Technique, PhD Thesis, The Center for Environment, Resources and Energy, Keio University, 2002.

    Google Scholar 

  18. Brown, J.S., Zilio, C., and Cavallini, A., Critical Review of the Latest Thermodynamic and Transport Property Data and Models, and Equations of State for R1234yf, Int. Refrigeration and Air Conditioning Conf., Purdue, July 12–15, 2010, pp. 1130–1139.

  19. Didion, D.A., The Influence of the Thermophysical Fluid Properties of the New Ozone-Safe Refrigerants on Performance, Int. J. Appl. Thermodyn., 1999, vol. 2, pp. 19–35.

    Google Scholar 

  20. Lemmon, E.W., McLinden, M.O., and Huber, M.L., NIST Reference Fluids Thermodynamic and Transport Properties REFPROP 9.0, Gaithersburg, MD, USA: National Institute of Standards and Technology (NIST), 2002.

    Google Scholar 

  21. Kumar, K.S. and Rajagopal, K., Computational and Experimental Investigation of Low ODP and Low GWP R123 and R290 Refrigerant Mixture Alternate to R12, Energy Convers. Manag., 2007, vol. 48, pp. 3053–3062.

    Article  Google Scholar 

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Bolaji, B.O., Huan, Z. Performance investigation of some hydro-fluorocarbon refrigerants with low global warming as substitutes to R134a in refrigeration systems. J. Engin. Thermophys. 23, 148–157 (2014). https://doi.org/10.1134/S1810232814020076

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  • DOI: https://doi.org/10.1134/S1810232814020076

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