[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