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首页> 外文期刊>International Journal of Heat and Mass Transfer >Heat transfer characteristics of phase change nanocomposite materials for thermal energy storage application
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Heat transfer characteristics of phase change nanocomposite materials for thermal energy storage application

机译:相变纳米复合材料在热能存储中的传热特性

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摘要

Three phase change nanocomposite materials made of stearic acid and different carbon additives (multi-walled carbon nanotube-MWCNT, graphene, graphite) are prepared to enhance the heat transfer performance for thermal energy storage applications. The SEM analysis shows that the carbon additives are uniformly distributed in the based phase change material of stearic acid, and the DSC analysis reveals that the melting onset temperature of nanocomposites shifts to a lower temperature. The experimental results indicate that the addition of carbon additives can improve the heat conduction of stearic acid effectively, but it also weakens the natural convection of stearic acid in liquid state. The graphite-based nanocomposite has the highest heat transfer performance during both the charging and discharging processes among three kinds of nanocomposites. In comparison with the pure stearic acid, the charging and discharging rates are improved by about 37% and 320%, respectively by using the graphite-based nanocomposite with the content of 5.0%. It appears that the graphite is a more effective additive for enhancing the heat transfer of phase change materials compared with MWCNT and graphene although the former additive has a lower thermal conductivity than the latter additives.
机译:制备了由硬脂酸和不同的碳添加剂(多壁碳纳米管-MWCNT,石墨烯,石墨)制成的三相变纳米复合材料,以增强热能存储应用的传热性能。 SEM分析表明,碳添加剂均匀地分布在硬脂酸基相变材料中,DSC分析表明,纳米复合材料的熔化起始温度向较低的温度移动。实验结果表明,添加碳添加剂可以有效提高硬脂酸的导热性,但也会削弱液态硬脂酸的自然对流。在三种纳米复合材料中,石墨基纳米复合材料在充电和放电过程中均具有最高的传热性能。与纯硬脂酸相比,通过使用含量为5.0%的石墨基纳米复合材料,充电和放电率分别提高了约37%和320%。与前者相比,石墨似乎是一种比MWCNT和石墨烯更有效的增强相变材料传热的添加剂。

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