Correlation for Flow Boiling Heat Transfer at Low Liquid Reynolds Number in Small Diameter Channels

Author:

Zhang Weizhong1,Hibiki Takashi23,Mishima Kaichiro43

Affiliation:

1. Graduate School of Energy Science, Kyoto University, Kyoto 606-8317, Japan

2. +81-724-51-2373 +81-724-51-2461

3. Research Reactor Institute, Kyoto University, Kumatori, Sennan, Osaka 590-0494, Japan

4. +81-724-51-2449 +81-724-51-2637

Abstract

In view of significance of a heat transfer correlation of flow boiling under the conditions of low liquid Reynolds number or liquid laminar flow, and very few correlations in principle suitable for such flow conditions, this study is aiming at developing a heat transfer correlation of flow boiling at low liquid Reynolds number for small diameter channels. The correlation is developed based on superimposition of two main flow boiling mechanisms, namely nucleate boiling and forced convection. In the correlation, two terms corresponding to nucleate boiling and forced convection are obtained from the pool boiling correlation by Forster and Zuber and the analytical annular flow model by Hewitt and Hall-Taylor, respectively. An extensive comparison with a collected database indicates that the developed correlation works satisfactorily with mean deviation and rms errors of 19.1% and 24.3%, respectively, under many experimental conditions such as different channel geometries (circular and rectangular) and flow orientations (vertical and horizontal) for some test fluids (water, R11, R12, and R113). A detailed discussion reveals that existing correlations for turbulent flow boiling such as Chen’s correlation, Schrock and Grossman’s correlation, and Dengler and Addoms’s correlation may be derived from a generalized form of the newly developed correlation.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference28 articles.

1. A Correlation for Boiling Heat Transfer to Saturated Fluid in Convective Flow;Chen;Ind. Eng. Chem. Process Des. Dev.

2. A New Correlation for Heat Transfer during Flow Boiling through Pipes;Shah;ASHRAE Trans.

3. A General Correlation for Flow Boiling in Tubes and Annuli;Gungor;Int. J. Heat Mass Transfer

4. A General Correlation for Saturated and Subcooled Flow Boiling in Tube and Annuli;Liu;Int. J. Heat Mass Transfer

5. A General Correlation for Saturated Two-phase Flow Boiling Heat Transfer Inside Horizontal and Vertical Tubes;Kandlikar;ASME J. Heat Transfer

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