By Lixin Cheng; Dieter Mewes
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Extra resources for Advances in multiphase flow and heat transfer Vol. 2
T. A. Ozbolt, US Lab Architecture Control Document, Volume 7: Temperature and Humidity Control, Revision New, D683-14719-1-7, Huntsville, Alabama: Boeing Defense and Space Group, Missile & Space Division, December 20, 1996. Passive Condensers Advances in Multiphase Flow and Heat Transfer Vol. 2 (2009) 35                  M. M. Hasan, Lutful I. Khan, V. Nayagam and R. Balasubramaniam, Conceptual Design of a Condensing Heat Exchanger for Space Systems Using Porous Media, NASA Report NASA/TM—2006-214130, May 2006.
6 , (55) 28 Advances in Multiphase Flow and Heat Transfer Vol. 2 (2009) Revankar where EA is a dimensional grouping of energy (in Btu), tA is the total time for addition of non-condensable gas and VC is the containment volume. The Tagami experiments were conducted in a forced convection regime. The geometrical aspects and the effect of velocity field in the bulk of the mixture were ignored in these correlations. Therefore, caution should be used to extrapolate the Uchida and Tagami correlations.
E. Vargas, G. A. G. Granqvist, “Condensation of water by radiative cooling”, Sol Energy, vol. 310–7, 1994. W. E. Vargas, E. M. Lushiku, G. A. Niklasson and T. M. J. Nilsson, “Light scattering coatings: theory and solar applications”, Sol Energy Mater. Sol. Cells, vol. 54, pp. 343–50, 1998. D. Beysensa,_ M. Musellic, I. Milimoukd, C. Ohayone, S. M. Berkowiczf, E. Soyeuxg, M. Mileta and P. Ortega, “Application of passive radiative cooling for dew condensation”, Energy, vol. 31, pp. 2303–2315, 2006.
Advances in multiphase flow and heat transfer Vol. 2 by Lixin Cheng; Dieter Mewes