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Numerical study of a Phase Change Material (PCM) embedded solar thermal energy operated cool store: A feasibility study

机译:相变材料的数值研究(PCM)嵌入式太阳能热能操作酷店:可行性研究

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Solar energy has proved to be an ideal alternative for fossil fuels, however, due to its intermittency in availability, systems operated by solar energy face serious limitations. In this study, a simplified dynamic model is developed to investigate the behavior of a PCM-embedded cool store. The main application of this type of cool store is to be operated with a solar thermal refrigeration system to compensate for the intermittency in energy availability. 8640 kg of crops (potatoes) is considered to be stored inside the cool store along with PCM cold thermal energy storage units. 9 h of active and 15 h of inactive period are considered for 24 h operation of the refrigeration system based on the solar energy availability data. During the active period, PCM units charge, and during the inactive period, they discharge and regulate the temperature inside the cool store. It was revealed that by choosing the right properties, PCM can keep the temperature of the crops in the desired range during the inactive period of the refrigeration system. Also, it was observed that the amount of PCM used and the phase change temperature of the PCM has a significant impact on the performance of the system. The lowest temperature obtained for the crops during the inactive period of the refrigeration system is for the case with PCM to crops amount ratio of 0.026 with PCM phase change temperature of 9 degrees C in which the discharge process finishes around the end of the inactive period of the refrigeration. (C) 2020 Elsevier Ltd and IIR. All rights reserved.
机译:已经证明,由于其在可用性间歇性,由太阳能而受到严重局限性的,太阳能已经证明是化石燃料的理想选择。在这项研究中,开发了一种简化的动态模型来研究PCM嵌入式酷储存的行为。这种类型的凉爽储存的主要应用是用太阳能热制冷系统操作,以补偿能量可用性的间歇性。 8640千克作物(土豆)被认为储存在凉爽的商店内以及PCM冷热储能单元内。基于太阳能可用性数据,考虑了9小时的活性期和15小时的非活动期间的制冷系统的操作。在活动期间,PCM单位充电,在非活动期间,它们排出并调节凉爽店内的温度。据透露,通过选择正确的性质,PCM可以在制冷系统的非活动时段期间将作物的温度保持在所需范围内。此外,观察到PCM的PCM量和PCM的相变温度对系统的性能产生了重大影响。在制冷系统的非活动时段期间对作物获得的最低温度是PCM与PCM相变度比为0.026的案例,PCM相变温度为9摄氏度,其中放电过程在非活动时段结束时完成制冷。 (c)2020 Elsevier Ltd和IIR。版权所有。

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