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Cooling Curve Analysis of Micro- and Nanographite Particle-Embedded Salt-PCMs for Thermal Energy Storage Applications

机译:用于热能存储应用的微型和纳米粒子嵌入盐PCM的冷却曲线分析

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In recent years, the focus of phase change materials (PCM) research was on the development of salt mixtures with particle additives to improve their thermal energy storage (TES) functionalities. The effect of addition of microsized (50 mu m) and nanosized (400 nm) graphite particles on TES parameters of potassium nitrate was analyzed in this work. A novel technique of computer-aided cooling curve analysis was employed here to study the suitability of large inhomogeneous PCM samples. The addition of graphite micro- and nanoparticles reduced the solidification time of the PCM significantly enhancing the heat removal rates, in the first thermal cycle. The benefits of dispersing nanoparticles diminished in successive 10 thermal cycles, and its performance was comparable to the microparticle-embedded PCM thereafter. The decay of TES functionalities on thermal cycling is attributed to the agglomeration of nanoparticles which was observed in SEM images. The thermal diffusivity property of the PCM decreased with addition of graphite particles. With no considerable change in the cooling rates and a simultaneous decrease in thermal diffusivity, it is concluded that the addition of graphite particles increased the specific heat capacity of the PCM. It is also suggested that the additive concentration should not be greater than 0.1% by weight of the PCM sample.
机译:近年来,相变材料(PCM)研究的重点是含有颗粒添加剂的盐混合物的发展,以改善其热能储存(TES)功能。在这项工作中,分析了在该工作中分析了微黄(50μm)和纳米化(400nm)石墨颗粒对TES参数的影响。这里采用了一种电脑辅助冷却曲线分析的新技术,以研究大的非均匀PCM样品的适用性。添加石墨微颗粒和纳米颗粒在第一热循环中减少了PCM的凝固时间,显着提高了散热速率。分散纳米颗粒在连续10个热循环中分散的益处,其性能与此后的微粒嵌入式PCM相当。热循环的TES功能的衰减归因于SEM图像中观察到的纳米颗粒的附聚。通过添加石墨颗粒,PCM的热扩散性能降低。在冷却速率没有相当大的变化和热扩散率的同时降低,得出结论是,图石墨颗粒的添加增加了PCM的比热容量。还建议添加剂浓度不应大于PCM样品重量的0.1%。

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