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Migration of carbon nanotubes from liquid phase to vapor phase in the refrigerant-based nanofluid pool boiling

机译:在基于制冷剂的纳米流体池沸腾中碳纳米管从液相迁移到气相

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摘要

The migration characteristics of carbon nanotubes from liquid phase to vapor phase in the refrigerant-based nanofluid pool boiling were investigated experimentally. Four types of carbon nanotubes with the outside diameters from 15 to 80 nm and the lengths from 1.5 to 10 μm were used in the experiments. The refrigerants include R113, R141b and n-pentane. The oil concentration is from 0 to 10 wt.%, the heat flux is from 10 to 100 kW·m-2, and the initial liquid-level height is from 1.3 to 3.4 cm. The experimental results indicate that the migration ratio of carbon nanotube increases with the increase of the outside diameter or the length of carbon nanotube. For the fixed type of carbon nanotube, the migration ratio decreases with the increase of the oil concentration or the heat flux, and increases with the increase of the initial liquid-level height. The migration ratio of carbon nanotube increases with the decrease of dynamic viscosity of refrigerant or the increase of liquid phase density of refrigerant. A model for predicting the migration ratio of carbon nanotubes in the refrigerant-based nanofluid pool boiling is proposed, and the predictions agree with 92% of the experimental data within a deviation of ±20%.
机译:实验研究了基于制冷剂的纳米流体池沸腾过程中碳纳米管从液相到气相的迁移特征。实验中使用了四种外径为15至80 nm,长度为1.5至10μm的碳纳米管。制冷剂包括R113,R141b和正戊烷。油的浓度为0至10重量%,热通量为10至100kW·m -2 ,初始液位高度为1.3至3.4cm。实验结果表明,随着碳纳米管外径或长度的增加,碳纳米管的迁移率增加。对于固定类型的碳纳米管,迁移率随着油浓度或热通量的增加而减小,并且随着初始液位高度的增加而增加。碳纳米管的迁移率随着制冷剂动态粘度的降低或制冷剂液相密度的增加而增加。提出了一种基于碳纳米管在制冷剂基纳米流体池沸腾中迁移率的预测模型,该预测与实验数据的92%相符,偏差为±20%。

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