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Experimental investigation on the use of water-phase change material storage in conventional solar water heating systems

机译:在传统的太阳能热水系统中使用水相变化材料存储的实验研究

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This paper presents an experimental investigation of the performance of water-phase change material (PCM) storage for use with conventional solar water heating systems. Paraffin wax contained in small cylindrical aluminum containers is used as the PCM. The containers are packed in a commercially available, cylindrical hot water storage tank on two levels. The PCM storage advantage is firstly demonstrated under controlled energy input experiments with the aid of an electrical heater on an isolated storage tank, with and without the PCM containers. It was found that the use of the suggested configuration can result in a 13-14 ℃ advantage in the stored hot water temperature over extended periods of time. The storage performance was also investigated when connected to flat plate collectors in a closed-loop system with conventional natural circulation. Over a test period of 24 h, the stored water temperature remained at least 30 ℃ higher than the ambient temperature. The use of short periods of forced circulation was found to have minimum effect on the performance of the system. Finally, the recovery effect and the storage performance of the PCM was analyzed under open-loop operation patterns, structured to simulate daily use patterns.
机译:本文介绍了用于常规太阳能热水系统的水相变化材料(PCM)存储性能的实验研究。装在小型圆柱形铝容器中的石蜡用作PCM。容器包装在两层的市售圆柱形热水储罐中。 PCM的优势首先在受控的能量输入实验下,借助电加热器在隔离储罐上(带或不带PCM容器)进行了证明。结果发现,使用建议的配置可以在较长时间内将所存储的热水温度提高13-14℃。在具有常规自然循环的闭环系统中连接平板收集器时,还研究了其存储性能。经过24小时的测试,储存的水温至少比环境温度高30℃。发现使用短时间的强制循环对系统的性能影响最小。最后,在开环操作模式下分析了PCM的恢复效果和存储性能,模拟了日常使用模式。

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