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Gravity and Heater Size Effects on Pool Boiling Heat TransferThe current work is based on observations of boiling heat transfer over a continuous range of gravity levels between 0g to 1.8g and varying heater sizes with a fluorinert as the test liquid (FC-72/n-perfluorohexane). Variable gravity pool boiling heat transfer measurements over a wide range of gravity levels were made during parabolic flight campaigns as well as onboard the International Space Station. For large heaters and-or higher gravity conditions, buoyancy dominated boiling and heat transfer results were heater size independent. The power law coefficient for gravity in the heat transfer equation was found to be a function of wall temperature under these conditions. Under low gravity conditions and-or for smaller heaters, surface tension forces dominated and heat transfer results were heater size dependent. A pool boiling regime map differentiating buoyancy and surface tension dominated regimes was developed along with a unified framework that allowed for scaling of pool boiling over a wide range of gravity levels and heater sizes. The scaling laws developed in this study are expected to allow performance quantification of phase change based technologies under variable gravity environments eventually leading to their implementation in space based applications.
Document ID
20140010367
Acquisition Source
Glenn Research Center
Document Type
Contractor Report (CR)
Authors
Kim, Jungho
(Maryland Univ. College Park, MD, United States)
Raj, Rishi
(Maryland Univ. College Park, MD, United States)
Date Acquired
July 31, 2014
Publication Date
May 1, 2014
Subject Category
Fluid Mechanics And Thermodynamics
Report/Patent Number
E-18879
GRC-E-DAA-TN13259
NASA/CR-2014-216672
Funding Number(s)
CONTRACT_GRANT: NNX11AK25A
WBS: WBS 904211.04.02.20.07
Distribution Limits
Public
Copyright
Public Use Permitted.
Keywords
Boiling
International Space Station
Fluid Dynamics
nucleate boiling
Microgravity
Dissolved Gas
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