Bubble Dynamics for Nucleate Pool Boiling of Electrolyte Solutions

Author:

Alavi Fazel Seyed Ali,Shafaee Seyed Baher1

Affiliation:

1. Department of Chemical Engineering, Islamic Azad University, Mahshahr, Khuzestan Province 63519, Iran

Abstract

Bubble dynamics is the most important subphenomenon, which basically affects the nucleate pool boiling heat transfer coefficient. Previous investigations state that the effect of physical properties of liquid and vapor phases on bubble departure diameter are often conflicting. In this article, extensive new experimental data are presented for the bubble departure diameter for various electrolyte aqueous solutions over a wide range of heat fluxes and concentrations. Experimental results show that the bubble detachment diameter increase with increasing either boiling heat flux or electrolyte concentration. Experimental results also present a close relation between the dimensionless capillary and bond numbers. A new model for the prediction of vapor bubble departure diameter in nucleate boiling for the electrolyte solutions is proposed, which predicts the experimental data with a satisfactory accuracy.

Publisher

ASME International

Subject

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

Reference34 articles.

1. Boiling of liquids;Westwater;Adv. Chem. Eng.

2. The Mechanism of Heat Transfer in Nucleate Pool Boiling, Int.—Part I: Bubble Initiation, Growth and Departure;Chi-Yeh;Int. J. Heat Mass Transfer

3. The Mechanism of Heat Transfer in Nucleate Pool Boiling—Part II: The Heat Flux-Temperature Difference Relation;Chi-Yeh;Int. J. Heat Mass Transfer

4. The Microlayer and Bubble Growth in Nucleate Pool Boiling;Cooper;Int. J. Heat Mass Transfer

5. Surface Variables in Nucleate Boiling;Corty;Chem. Eng. Prog., Symp. Ser.

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