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Parametric study of pool boiling from porous graphite foams in dielectric liquids

机译:电介质液体中多孔石墨泡沫对池沸腾的参数研究

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An experimental investigation of pool boiling on porous graphite foams is presented in this paper. A compact thermosyphon was developed to conduct the experiments using different types of graphite foams as evaporator inserts. Two dielectric liquids viz. FC-12 and HFE-700 were used as phase change coolants to investigate the effects of pore diameter and thermal conductivity of the foams on pool boiling heat transfer. It is found that the boiling heat transfer is affected by phase change coolant types. The difference of thermophysical properties between FC-12 and HFE-7000 resulted in different boiling characteristics on porous graphite foams. The experimental results indicate that thermal conductivity and pore diameter exhibit an interrelated effect on boiling performance. The compromise of these foam properties affects the bubble departure frequency which dominates the boiling heat transfer coefficient. This study demonstrates that the designed air-cooled thermosyphon can maintain the heater surface temperature below 85°C at heat flux of 112 W/cm2
机译:本文介绍了多孔石墨泡沫上池沸腾的实验研究。开发了一种紧凑的热旋流,以使用不同类型的石墨泡沫作为蒸发器插入物进行实验。两个介电液体viz。 FC-12和HFE-700用作相变冷却剂,以研究孔径和泡沫导热率对池沸腾热传递的影响。发现沸腾的传热受相变冷却剂类型的影响。 Fc-12和HFE-7000之间的热神科性质的差异导致多孔石墨泡沫上的沸点特性。实验结果表明导热系和孔径对沸腾性能的相互关联作用。这些泡沫特性的折衷会影响泡沫脱离频率,其主导沸腾的传热系数。本研究表明,设计的风冷热旋流水可以将加热器表面温度低于85℃,在112W / cm 2 的热通量下

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