Liquid Immersion Cooling of a Longitudinal Array of Discrete Heat Sources in Protruding Substrates: II—Forced Convection Boiling

材料科学 沸腾 传热 雷登弗罗斯特效应 核沸腾 热流密度 机械 临界热流密度 沸腾传热 对流 传热系数 强迫对流 过冷 散热片 热的 沉浸式(数学) 自然对流 热阻 热管 热力学 强化传热 冷却液
作者
T. J. Heindel,S. Ramadhyani,F. P. Incropera
出处
期刊:Journal of Electronic Packaging [ASM International]
卷期号:114 (1): 63-70
标识
DOI:10.1115/1.2905443
摘要

Forced convection boiling experiments have been performed for an in-line 1 x 10 array of discrete heat sources, flush mounted to protruding substrates located on the bottom wall of a horizontal flow channel. FC-72, a dielectric fluorocarbon liquid, was used as the heat transfer fluid, and the experiments covered a range of flow velocities, degrees of fluid subcooling, and channel heights. The maximum heater-to-heater surface temperature variation was less than 2.5°C and was insensitive to channel height under conditions of fully developed nucleate boiling. Although the fluid velocity influenced the heat flux for partially developed nucleate boiling, its influence was muted for fully developed nucleate boiling. The heat flux associated with a departure from nucleate boiling increased with increasing velocity, subcooling, and channel height; however, the effect of channel height was only significant when all of the upstream heaters were energized.
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