Numerical Study of Boiling Heat Transfer Around Horizontal and Inclined Cylinders

Author:

Saha Avik1,Das Arup Kumar1

Affiliation:

1. Department of Mechanical and Industrial Engineering, IIT, Roorkee 247667, India

Abstract

Abstract Pool boiling around a heated cylinder having a diameter larger than the departure diameter of bubbles has been simulated numerically. Thermally uniform heat flux condition has been maintained at the outer surface of the cylinder, submerged at saturated water at atmospheric pressure. Using the volume of fluid type framework of liquid phase fraction in the domain, bubble life cycle around the horizontal cylinder has been analyzed to understand different stages of growth, sliding, merging prior to departure. An effort has also been made to characterize the bubble population, emerging from different sites over the cylindrical surface. The influence of cylinder inclination along its axis on these interfacial features has also been discussed using representative numerical simulation. Temperature profiles of the cylinder surface have been portrayed for both horizontal and inclined situations before presenting respective heat transfer coefficients.

Publisher

ASME International

Subject

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

Reference34 articles.

1. The Maximum and Minimum Values of the Heat Q Transmitted From Metal to Boiling Water Under Atmospheric Pressure;Int. J. Heat Mass Transfer,1966

2. Experiments on Pool-Boiling Heat Transfer;Int. J. Heat Mass Transfer,1962

3. Correlations for the Prediction of Boiling Heat Transfer in Small-Diameter Channels;Appl. Therm. Eng.,1997

4. Correlation for Boiling Heat Transfer to Saturated Fluids in Convective Flow;Ind. Eng. Chem. Process Des. Develop.,1966

5. A General Correlation for Saturated Two-Phase Flow Boiling Heat Transfer Inside Horizontal and Vertical Tubes;ASME J. Heat Transfer-Trans. ASME,1990

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