A novel transient thermohydraulic model of a micro heat pipe

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7
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11

초록

A transient analysis model for predicting the heat and mass transfer performance in micro heat pipes is presented in this paper. The mass, momentum, and energy equations were separately applied for the vapor and liquid phases to predict the physical performance of the transient response more effectively. As a result, the axial distributions of the mass flow, pressure, and temperature were obtained for the vapor and liquid in a micro heat pipe. In particular, the profile of the liquid-vapor interface was obtained with liquid thin-film theory using the augmented Young-Laplace equation. Consequently, the interfacial areas for heat and mass transfer were predicted and incorporated into the governing equations of each phase. The analytical model was validated by comparing its solutions with experimental results. The discrepancy between the experimental and numerical results for the temperature difference between the evaporator and the condenser was less than 0.5 degrees C, which represents moderate accuracy. (C) 2019 Elsevier Ltd. All rights reserved.

키워드

Micro heat pipeTransient analytical modelPhase-change interfaceThin-film theoryFilm thicknessAugmented Young-Laplace equationSTEADY-STATE PERFORMANCETHERMAL PERFORMANCETHIN-FILMSYSTEMPRESSUREARRAY
제목
A novel transient thermohydraulic model of a micro heat pipe
저자
Jung, Eui GukBoo, Joon Hong
DOI
10.1016/j.ijheatmasstransfer.2019.06.041
발행일
2019-09
유형
Article
저널명
International Journal of Heat and Mass Transfer
140
페이지
819 ~ 827