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首页> 外文期刊>International journal of energy research >Performance analysis on industrial refrigeration system integrated with encapsulated PCM-based cool thermal energy storage system
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Performance analysis on industrial refrigeration system integrated with encapsulated PCM-based cool thermal energy storage system

机译:基于PCM封装的冷蓄热系统的工业制冷系统性能分析。

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摘要

Cool thermal energy storage (CTES) is an advanced energy technology that has recently attracted increasing interest for industrial refrigeration applications such as process cooling, food preservation and building air conditioning systems. An experimental investigation on the performance of an industrial refrigeration system integrated with encapsulated phase change material (PCM)-based CTES system is carried out in the present work. In the experimental set-up a vertical storage tank is integrated with the evaporator of the vapour compression refrigeration system. Effect of the inlet temperature of heat transfer fluid (HTF) on the temperature variation of the PCM and the HTF in the storage tank and the performance parameters namely average rate of charging, energy stored, specific energy consumption (SEC) of the chiller with and without storage system are studied in detail. The effect of porosity variation in the storage tank is also studied. A l℃ decrease in evaporator temperature results in about 3-4% increase in SEC and 1℃ decrease in condensing temperature leads to 2.25-3.25% decrease in SEC. The range of HTF inlet temperature and porosity values for optimum performance is reported.
机译:冷热能存储(CTES)是一项先进的能源技术,最近在工业制冷应用(例如过程冷却,食品保鲜和建筑空调系统)中引起了越来越多的关注。在本工作中,对基于封装相变材料(PCM)的CTES系统集成的工业制冷系统的性能进行了实验研究。在实验装置中,立式储罐与蒸汽压缩制冷系统的蒸发器集成在一起。传热流体(HTF)的入口温度对储罐中PCM和HTF的温度变化以及性能参数的影响,即平均装料速度,存储的能量,制冷剂的单位能耗(SEC)和没有存储系统的详细研究。还研究了储罐中孔隙率变化的影响。蒸发器温度每降低1℃,SEC的升高约3-4%,而冷凝温度每降低1℃,则SEC降低2.25-3.25%。报告了用于最佳性能的HTF入口温度和孔隙率值范围。

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