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Thermal performance enhancement of a phase change material (PCM) based portable box for cold chain applications

机译:用于冷链应用的基于相变材料(PCM)便携式盒的热性能增强

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Y A phase change material (PCM) based portable box for cold chain transportation applications was studied. A composite containing paraffin-based PCM (RT 5), fumed silica and graphene was used. The chemical compatibility of ingredients, and the thermal properties and cyclability of the composite PCMs were investigated. An insitu X-ray Diffractometer (XRD) was used to study the solidification behaviour of the PCM composites. An experimental rig was built to compare the charging time, cooling duration and energy efficiency of the portable box containing the composite PCMs. The results showed that the composite PCMs had good cyclability and chemical stability. An addition of 4 wt.% fumed silica was able to eliminate the PCM leakage. By adding 1 wt.% of graphene, the thermal conductivity of composite increased by 55.4%. When using composite PCMs, the charging time of the box was reduced by 6.25%. Besides, the portable box could provided a temperature environment of 2 similar to 8 degrees C for up to 11.5 hours. The charging and overall energy efficiency increased by 6.09% and 12.58%, respectively. The results also show substantial evidence that the use of silica and graphene enhances the nucleation process of phase change kinetics and reduces the PCM supercooling.
机译:y研究了用于冷链运输应用的基于相变材料(PCM)便携式盒。使用含有基于石蜡基PCM(RT 5),气相二氧化硅和石墨烯的复合材料。研究了成分的化学相容性,以及复合PCM的热性能和可循环性。 Insitu X射线衍射仪(XRD)用于研究PCM复合材料的凝固行为。建立实验钻机,以比较包含复合PCM的便携式盒的充电时间,冷却持续时间和能效。结果表明,复合PCM具有良好的可控制性和化学稳定性。添加4重量%。%熏蒸二氧化硅能够消除PCM泄漏。通过加入1重量%的石墨烯,复合材料的导热率增加了55.4%。使用复合PCM时,盒子的充电时间减少了6.25%。此外,便携式盒子可以提供2个温度环境,其2个类似于8摄氏度,最高可达11.5小时。充电和整体能源效率分别增加了6.09%和12.58%。结果还显示了二氧化硅和石墨烯的使用的实质性证据增强了相变动力学的成核过程,并减少了PCM过冷。

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