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Charging-discharging characteristics of macro-encapsulated phase change materials in an active thermal energy storage system for a solar drying kiln

机译:太阳能干燥窑用主动储热系统中大封装相变材料的充放电特性

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The present study explores suitability of two phase change materials (PCM) for development of an active thermal storage system for a solar drying kiln by studying their melting and solidification behaviors. A double glass glazing prototype solar kiln was used in the study. The storage system consisted of a water storage tank with PCM placed inside the water in high density polyethylene containers. The water in the tank was heated with help of solar energy using an evacuated tube collector array. The melting and solidification temperature curves of PCM were obtained by charging and discharging the water tank. The study illustrated the utility of the PCM in using the stored thermal energy during their discharge to enhance the temperature inside the kiln. The rate of temperature reduction was found to be higher for paraffin wax as compared to a fatty acid based PCM. The water temperature during the discharge of the PCM showed dependence on the discharge characteristics of each PCM suggesting their suitability in designing active thermal storage systems.
机译:本研究通过研究两种相变材料的熔融和凝固行为,探索了两种相变材料(PCM)是否适合开发用于太阳能干燥窑炉的主动蓄热系统。研究中使用了双层玻璃窗原型太阳能窑炉。储水系统由一个储水箱和一个PCM组成,储水箱位于高密度聚乙烯容器中的水中。使用真空管收集器阵列,利用太阳能加热水箱中的水。 PCM的熔化和凝固温度曲线是通过给水箱充放电获得的。研究表明,PCM在排放过程中利用所存储的热能来提高窑内温度的效用。发现与基于脂肪酸的PCM相比,石蜡的温度降低率更高。 PCM放电期间的水温取决于每个PCM的放电特性,表明它们适用于设计有源蓄热系统。

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