The effect of low gravity on pool boiling heat flux has been studied by researchers, but pool boiling heat flux data over a continuous range of gravity levels (0g–1.8g) was unavailable until recently. The current work uses the results of a variable gravity subcooled pool boiling experiment to develop a gravity scaling parameter for prediction purposes. The heat flux prediction at various gravity levels was found to be in good agreement with the measured heat flux data. The scaling parameter can be used as a tool to predict boiling heat flux at any gravity level if the data under similar experimental conditions are available at any other gravity level. The scaling parameter has been demonstrated to be valid for pool boiling of n-perfluorohexane in heater size independent boiling regime (Lh/Lc>2.8).
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ASME 2009 International Mechanical Engineering Congress and Exposition
November 13–19, 2009
Lake Buena Vista, Florida, USA
Conference Sponsors:
- ASME
ISBN:
978-0-7918-4382-6
PROCEEDINGS PAPER
Gravity Scaling Parameter for Pool Boiling Heat Transfer
Rishi Raj,
Rishi Raj
University of Maryland, College Park, MD
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Jungho Kim,
Jungho Kim
University of Maryland, College Park, MD
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John McQuillen
John McQuillen
NASA Glenn Research Center, Cleveland, OH
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Rishi Raj
University of Maryland, College Park, MD
Jungho Kim
University of Maryland, College Park, MD
John McQuillen
NASA Glenn Research Center, Cleveland, OH
Paper No:
IMECE2009-12624, pp. 1701-1707; 7 pages
Published Online:
July 8, 2010
Citation
Raj, R, Kim, J, & McQuillen, J. "Gravity Scaling Parameter for Pool Boiling Heat Transfer." Proceedings of the ASME 2009 International Mechanical Engineering Congress and Exposition. Volume 9: Heat Transfer, Fluid Flows, and Thermal Systems, Parts A, B and C. Lake Buena Vista, Florida, USA. November 13–19, 2009. pp. 1701-1707. ASME. https://doi.org/10.1115/IMECE2009-12624
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