Receding liquid level in evaporator wick and capillary limit of loop thermosyphon
Author:
Funder
National Science Foundation
Publisher
Elsevier BV
Subject
Fluid Flow and Transfer Processes,Mechanical Engineering,Condensed Matter Physics
Reference22 articles.
1. Numerical analysis and experimental verification on thermal fluid phenomena in a vapor chamber;Koito;Appl. Therm. Eng.,2006
2. Choosing working fluid for two-phase thermosyphon systems for cooling of electronics;Palm;J. Electronic Pack.,2003
3. Loop heat pipes and capillary pumped loops-an applications perspective;Butler,2002
4. Evaporation/boiling in thin capillary wicks (l)—wick thickness effects;Li;J. Heat Transfer,2006
5. A numerical model for transport in flat heat pipes considering wick microstructure effects;Ranjan;Int. J. Heat Mass Transf.,2011
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