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Two-phase closed thermosyphon vapor-chamber system for electronic cooling

โœ Scribed by Te-En Tsai; Hsin-Hsuan Wu; Chih-Chung Chang; Sih-Li Chen


Publisher
Elsevier Science
Year
2010
Tongue
English
Weight
960 KB
Volume
37
Category
Article
ISSN
0735-1933

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โœฆ Synopsis


This article experimentally investigates a two-phase closed thermosyphon vapor-chamber system for electronic cooling. A thermal resistance net work is developed in order to study the effects of heating power, fill ratio of working fluid, and evaporator surface structure on the thermal performance of the system. The results indicate that either a growing heating power or a decreasing fill ratio decreases the total thermal resistance, and the surface structure also influences the evaporator function prominently. A reasonable agreement with Rohesnow's empirical correlation is found for the evaporator. An optimum overall performance exists at 140 W heating power and 20% fill ratio with sintered surface, and the corresponding total thermal resistance is 0.495 ยฐC W -1 .


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