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Thermal conductivity and heat transfer performance enhancement of phase change materials (PCM) containing carbon additives for heat storage application

机译:含碳添加剂的相变材料(PCM)用于储热的导热性和传热性能增强

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摘要

In thermal storage system, a high thermal conductivity of Phase Change Materials (PCM) is required to complement the crystallization phenomenon of the PCM during the discharging process. In this study, PCM with carbon additives, Multi-walled Carbon nanotube, Graphite and Graphene, are manufactured and the thermal conductivity of the PCM is measured by the transient hot-wire method for thermal storage application. The thermal conductivity of the PCM is enhanced by adding the carbon additives, and the effect of Poly Vinyl Pyrrolidone (PVP) as a dispersion stabilizer on the thermal conductivity is evaluated. It is found that the heat transfer rate enhances up to 3.35 times in the case of Graphite at 5.0 vol%. It is finally concluded that Graphite is the most promising candidate for heat transfer enhancement of stearic acid among three carbon additives even though Graphene gives the highest thermal conductivity enhancement.
机译:在储热系统中,需要高相变材料(PCM)的导热率来补充PCM在放电过程中的结晶现象。在这项研究中,制造了具有碳添加剂的PCM,多壁碳纳米管,石墨和石墨烯,并通过瞬态热线法测量了PCM的热导率,以用于热存储应用。通过添加碳添加剂可以增强PCM的导热性,并评估聚乙烯吡咯烷酮(PVP)作为分散稳定剂对导热性的影响。发现在5.0vol%的石墨的情况下,传热率提高了3.35倍。最终得出的结论是,尽管石墨烯具有最高的导热率增强能力,但石墨是三种碳添加剂中硬脂酸传热增强的最有希望的候选者。

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