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Pool boiling heat transfer to electrolyte solutions
Authors:M. Jamialahmadi,H. Mü  ller-Steinhagen
Affiliation:a The University of Petroleum Industry, Ahwaz, Iran
b Department of Chemical and Process Engineering, University of Surrey, Guildford, UK
c Institute for Thermodynamics and Thermal Engineering, University of Stuttgart, Pfaffenwaldring 38-40, Stuttgart 70569, Germany
d Institute for Technical Thermodynamics, German Aerospace Research Centre (DLR), Germany
Abstract:Pool boiling heat transfer coefficients were measured for solutions of salts with positive solubility in water. The effect of the dissolved salts on nucleation site density, bubble departure diameter and bubble frequency was also investigated. The results show that at low heat fluxes heat transfer coefficients can be considerably lower than corresponding values for distilled water. At high heat fluxes the negative effect of the dissolved electrolyte gradually decreased and finally some improvement in heat transfer coefficient was observed. A correlation was developed for nucleate boiling of aqueous solutions from salts with positive solubility. Assuming that the mass transfer resistance is limited to the liquid side, the proposed model allows the prediction of heat transfer coefficients from boiling point data of the respective solutions. Comparison with a significant number of experimental data for different systems indicates that the model should be sufficiently accurate for most practical applications.
Keywords:Pool boiling   Salt solutions   Heat transfer   Mass transfer   Modelling   Correlation
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