Performance Analysis of a Refrigeration System Using Nano Fluid

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Performance Analysis of a Refrigeration System Using Nano Fluid 469 8. Conclusion Cuo nanoparticle with R134a refrigerant can be used as an excellent refrigerant to improve the heat transfer characteristics in a refrigeration system. A successful model has been designed and the basic theoretical heat transfer analysis of the refrigeration system has been done. Successful mesh has been designed for the designed test section using GAMBIT software. Computational Fluid Dynamics (CFD) Heat Transfer analysis for the designed test Section has been successfully performed using FLUENT software. The obtained evaporating heat transfer coefficient result with increases with the usage of nanoCuo. References [1] A.Baskaran, P.Koshy Mathews ,( Sep 2012) A Performance comparison of vapour compression refrigeration [2] system using Eco friendly refrigerants of low GWP, Int. J. Sci. Research, 2(9) [3] Bi S., Shi L. and Zhang L., (2008) Application of nanoparticles in domestic refrigerators. Applied Thermal Engineering, Vol. 28, pp.1834-1843 [4] Bi S., Guo K., Liu Z.,( 2011) Performance of a domestic refrigerator using TiO2-R600a nanorefrigerant as working fluid. Energy Conversion and Management, Vol. 52, No. 1, pp. 733-737 [5] D. Sendil Kumar, Dr. R. Elansezhian .,( Sep.-Oct. 2012) Experimental Study on Al2O3-R134a Nano Refrigerant in Refrigeration System, International Journal of Modern Engineering Research (IJMER) Vol. 2, Issue. 5, pp-3927- 3929 [6] Eed Abdel-Hafez Abdel-Hadi, Sherif Hady Taher., (2011)Heat Transfer Analysis of Vapor Compression System Using Nano CuoR134a, International Conference on Advanced Materials Engineering, vol.15 [7] Gupta H.K, Agrawal G.D, Mathur J.,( 2012) ,An overview of Nanofluids: A new media towards green environment, International Journal of environmental sciences volume 3, no 1 [8] Hwang Y, Par HSK, Lee JK, Jung WH.( 2006.) Thermal conductivity and lubrication characteristics of nanofluids. Curr Appl Phys; 6S1:e67–71 [9] I.M. Mahbubul, R. Saidur and M.A. Amalina., (2011) Pressure drop characteristics of TiO2–R123 nanorefrigerant in a circular tube , Engineering e-Transaction , Vol. 6, No. 2, pp 124-130 [10] Juan Carlos Valdez Loaiza,Frank Chaviano Pruzaesky,Jose Alberto Reis parise, (2010) A numerical Study on the Application of Nanofluids in Refrigeration Systems,Int. Refri. And Air-condtn. Conference, paper 1145, July 12-15 [11] Jwo et.al, (2009)Effect of nano lubricant on the performance of Hydrocarbon refrigerant system. J. Vac. Sci. Techno. B, Vol.27,No. 3, pp. 1473-1477 [12] Liu M-S, Lin MC-C, Huang I-Te, Wang C-C. (2006)Enhancement of thermal conductivity with CuO for nanofluids. Chem Eng Technol;29(1):72–7

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