Experimental Investigation on Flow Boiling in Micro-Channel with R32/R134a

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Abstract:

Mechanism of flow boiling heat transfer in micro-channel and mini-channel with non-azeotropic refrigerant mixture R32/R134a is studied in this paper. Experimental research is carried out at different mass flow rate, heat flux and quality. The difference of heat transfer in two single tubes is analyzed.

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Periodical:

Advanced Materials Research (Volumes 199-200)

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1574-1578

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February 2011

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© 2011 Trans Tech Publications Ltd. All Rights Reserved

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[1] S.T. Munkejord, H.S. Mahlum, G.R. Zakeri, et al, Int. J. Refrigeration. 25 , 471(2002).

Google Scholar

[2] G. Kolb, J. Schürer, D. Tiemann, et al, J. Power Sources 171, 198 (2007).

Google Scholar

[3] R. Yun, Y. Kim and M.S. Kim, Int. J. Heat Mass Transfer 48, 235 (2005).

Google Scholar

[4] S.G. Kandlikar, Exp. Thermal Fluid Sci. 26, 389 (2002).

Google Scholar

[5] J.R. Thome. Int. J. Heat Fluid Flow 25, 128 (2004).

Google Scholar

[6] Z.Y. Bao, D.F. Fletcher and B.S. Haynes, Int. J. Heat Mass Transfer 43, 3347 (2000).

Google Scholar

[7] W. Owhaib, C. Martín-Callizo and B. Palm, Appl. Therm. Eng. 24, 1241 (2004).

Google Scholar

[8] G. Ribatski, L. Wojtan and J.R. Thome, Exp. Therm. Fluid Sci. 31, 1 (2006).

Google Scholar

[9] Y.Y. Yan and T.F. Lin, Int. J. Heat Mass Transfer 41, 4183 (1998).

Google Scholar

[10] I. Sehwan and J. Sangkwon, International Journal of Multiphase Flow 35. 987(2009).

Google Scholar

[11] S. Baduge, K. Fumito and M. Kunihito, Experimental Thermal and Fluid Science 27. 789(2003).

Google Scholar

[12] W. Zhang, T. Hibiki, K. Mishima. International Journal of Heat and Mass Transfer 47. 5749(2004).

Google Scholar

[13] L. Gao, F.Q. Ma, X.W. Fan, et al. Energy Conservation Technology 22, 6(2004).

Google Scholar

[14] J.E. Kennedy, G.M. Roqach, M.F. Dowling. Journal of Heat Transfer 122. 118(2000).

Google Scholar