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Miniature loop heat pipe with flat evaporator for cooling computer CPU

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posted on 2024-11-23, 07:01 authored by Randeep Singh, Aliakbar AkbarzadehAliakbar Akbarzadeh, Christopher Dixon, Mastaka Mochizuki, Roger Riehl
This paper presents an experimental investigation on a copper miniature loop heat pipe (mLHP) with a flat disk shaped evaporator, 30mm in diameter and 10-mm thick, designed for thermal control of computer microprocessors. Tests were conducted with water as the heat transfer fluid. The device was capable of transferring a heat load of 70W through a distance up to 150mm using 2-mm diameter transport lines. For a range of power applied to the evaporator, the system demonstrated very reliable startup and was able to achieve steady state without any symptoms of wick dry-out. Unlike cylindrical evaporators, flat evaporators are easy to attach to the heat source without need of any cylinder-to-plane reducer material at the interface and thus offer very low thermal resistance to the heat acquisition process. In the horizontal configuration, under air cooling, the minimum value for the mLHP thermal resistance is 0.17degC/W with the corresponding evaporator thermal resistance of 0.06degC/W. It is concluded from the outcomes of the current study that a mLHP with flat evaporator geometry can be effectively used for the thermal control of electronic equipment including notebooks with limited space and high heat flux chipsets. The results also confirm the superior heat transfer characteristics of the copper-water configuration in mLHPs

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    ISSN - Is published in 15213331

Journal

IEEE Transactions on Components and Packaging Technologies

Volume

30

Start page

42

End page

49

Total pages

8

Publisher

IEEE

Place published

Piscataway

Language

English

Copyright

© 2007 IEEE. Personal use of this material is permitted. However, permission to reprint/republish this material for advertising or promotional purposes or for creating new collective works for resale or redistribution to servers or lists, or to reuse any copyrighted component of this work in other works must be obtained from the IEEE.

Former Identifier

2006005842

Esploro creation date

2020-06-22

Fedora creation date

2009-02-27

Open access

  • Yes

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