Thermal Analysis of a Water-Filled Micro Heat Pipe With Phase-Change Interfacial Resistance

Author:

Mun Hung Yew1,Tio Kek-Kiong2

Affiliation:

1. School of Engineering, Monash University, 46150 Bandar Sunway, Malaysia e-mail:

2. Faculty of Engineering and Technology Multimedia University, 75450 Melaka, Malaysia e-mail:

Abstract

The progressive evaporation and condensation processes in a micro heat pipe, with which high heat fluxes at the liquid–vapor interface are associated, render it a device of high thermal conductance. By coupling the phase-change interfacial resistance model with a mathematical model based on first principles for fluid flow and heat transfer, the axial temperature variations of the liquid and vapor phases as well as those of other field variables are characterized and analyzed. The findings provide a well-defined exposition of the validity of uniform-temperature assumption for the liquid and vapor phases in the analysis of micro heat pipes. In conjunction with the acquisition of liquid and vapor temperature profiles, the heat transfer characteristics of the evaporation process can be analyzed. The local evaporative heat transfer coefficient and heat flux are evaluated. The results indicate that both heat transfer coefficient and heat flux are of considerably high values, confirming that the heat transport capability of a micro heat pipe is dominated by the phase-change heat transfer at the liquid–vapor interface.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference35 articles.

1. Cotter, T. P., 1984, “Principles and Prospects for Micro Heat Pipes,” Proceedings of the 5th International Heat Pipe Conference, Tsukuba, Japan, pp. 328–335.

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3. Thermal Analysis of a Micro Heat Pipe;ASME J. Heat Transfer,1994

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5. Thermal Analysis of Micro Heat Pipes Using a Porous-Medium Model;Heat Mass Transfer,2000

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