By Lixin Cheng; Dieter Mewes
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Extra info for Advances in multiphase flow and heat transfer Vol. 1, 2009
1 (2009) 51               C. C. Tang and A. J. Ghajar, "Validation of a general heat transfer correlation for non-boiling two-phase flow with different flow patterns and pipe inclination angles," in Proceedings of the 2007 ASME-JSME Thermal Engineering Summer Heat Transfer Conference, Vancouver, BC, Canada, 2007. A. J. Ghajar, J. Kim, and C. Tang, "Two-phase flow heat transfer measurements and correlation for the entire flow map in horizontal pipes," in Proceedings of the 13th International Heat Transfer Conference, Sydney, Australia, 2006.
Results of the predictions for 986 experimental heat transfer data points with different gas-liquid combinations and inclination angles by using Eq. (24). 25. Practical Illustrations of Using the General Two-Phase Heat Transfer Correlation The general two-phase heat transfer correlation, Eq. (24), is applicable for estimating heat transfer coefficients for non-boiling two-phase, two-component (liquid and permanent gas) flow in pipes. In this section, three illustrations of using the general two-phase heat transfer correlation, Eq.
The air is then filtered and condensation removed in a coalescing filter. The air flow is measured by a Micro Motion Coriolis flow meter (model CMF025) connected to a digital Field-Mount Transmitter (model RFT9739) and regulated by a needle valve. Air is delivered to the test section by flexible tubing. The water and air mixture is returned to the reservoir where it is separated and the water recycled. Fig. 7. Schematic of experimental setup. Advances in Void Fraction, Flow Pattern Maps and… Advances in Multiphase Flow and Heat Transfer Vol.
Advances in multiphase flow and heat transfer Vol. 1, 2009 by Lixin Cheng; Dieter Mewes