Nucleate pool boiling heat transfer measurement and flow visualization for ammonia-water mixture
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Date
2011
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Abstract
Visualization of bubble nucleation during nucleate pool boiling outside a vertical cylindrical heated surface was done for ammonia-water binary mixture in order to obtain a descriptive behavior of the boiling, which was directly compared with the measured heat transfer coefficient data at low pressure of 4-8 bar and at low mass fraction of 0 < x < 0.3 and at different heat flux. Still images taken with high speed camera are used to demonstrate the decrease in boiling heat transfer coefficient with increase in ammonia mass fraction. Jensen and Memmel model has better agreement with experimental bubble diameter. Further work is required to obtain quantitative information about bubble nucleation parameters. It is found that both Calus and Rice and Stephan-Koorner correlation can predict the experimental heat transfer coefficient values with a maximum deviation of ±20%. © 2011 American Society of Mechanical Engineers.
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Keywords
Ammonia-water mixture, Ammonia/water, Boiling heat-transfer coefficients, Bubble diameter, Bubble dynamics, Bubble nucleation, Experimental heat transfer, Heated surfaces, Low mass, Low pressures, Mass fraction, Nucleate pool boiling, Pool boiling, Quantitative information, Still images, Ammonia, Binary mixtures, Flow visualization, Heat flux, Heat transfer coefficients, Lakes, Nucleation, Data visualization
Citation
Journal of Heat Transfer, 2011, 133, 10, pp. -
