Enhancement of Integrated Solar Collector with Spherical Capsules PCM Affected by Additive Aluminum Powder

Fatah O. Al Ghuol, K. Sopian, S. Abdullah
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引用次数: 4

Abstract

This research aims to study, analyze, design, and construct a solar air heater combined with an appropriate phase-change material (PCM) unit. This solar air heater is analogous to a collector integrating a thermal storage unit and a solar thermal collector. In this study, such single-pass solar air heater in amalgamation with PCM was constructed, and several tests were conducted on this device. During the experiments for the solar collector with PCM (spherical capsules), the temperature varied between 30°C and 35°C, and the air mass flow rate ranged between 0.03 and 0.09 kg/s. Results confirmed the predicted experimental findings. With the use of paraffin wax-aluminum composite, the thermal storage efficiency of the constructed solar air heater reached a maximum value of 71% at 0.05 kg/s mass flow rate, its charging time decreased by almost 70%, and its cooling rate increased. The thermal storage efficiency of the compound composite was 76.8% at 0.07 kg/s mass flow rate. The results also indicated that the time of charging decreased by almost 60% with the use of paraffin wax-aluminum composite.
添加铝粉对球形胶囊型PCM集成太阳能集热器性能的影响
本研究旨在研究、分析、设计和建造一个结合适当相变材料(PCM)单元的太阳能空气加热器。这种太阳能空气加热器类似于集热存储单元和太阳能热收集器为一体的集热器。在本研究中,构建了这种与PCM混合的单道太阳能空气加热器,并对该装置进行了多次试验。在PCM(球形胶囊)太阳能集热器的实验中,温度在30℃~ 35℃之间变化,空气质量流量在0.03 ~ 0.09 kg/s之间变化。结果证实了预测的实验结果。采用石蜡-铝复合材料后,在0.05 kg/s质量流量下,所构建的太阳能空气加热器蓄热效率达到最大值71%,充装时间缩短近70%,冷却速率提高。当质量流量为0.07 kg/s时,复合材料的蓄热效率为76.8%。结果还表明,石蜡-铝复合材料的充电时间缩短了近60%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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