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Theoretical and experimental analysis of thermal performance of a solar water heating system with evacuated tube heat pipe collector

机译:真空管式热管集热器太阳能热水系统热性能的理论和实验分析

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This study was carried out to theoretically and experimentally evaluate the performance of a solar water heating system with evacuated tube heat pipe collector. First, a mathematical model was presented according to thermal and exergy analysis to analyze the collector performance and then the given system was constructed and experimentally tested according to a real consumption pattern. The obtained results showed that the optimal number of collector pipes was reported to be 15. Also, a direct association was found between hot water consumption and system performance. The trend of changes for exergetic efficiency is ascending as the time is passed. At the end of the day, this efficiency reaches its maximum level, around 5.4%. The maximum outlet temperature of collector was about 64 degrees C, which occurred between 15:00 and 16:00 pm. In the early morning, an auxiliary system was' required; however, this support system went off cycle after 14:00 pm and the solar cycle alone supplied the required energy. The comparison of theoretical and experimental results was indicative of the capability of the developed model in predicting the performance of heat pipe solar water heater with maximum relative error of 8.4% and the maximum standard error of 1.91%. (C) 2016 Elsevier Ltd. All rights reserved.
机译:进行这项研究是在理论上和实验上评估带有真空管热管集热器的太阳能热水系统的性能。首先,根据热和火用分析提出了一个数学模型,以分析集热器的性能,然后根据实际的消耗模式构造了给定的系统并进行了实验测试。获得的结果表明,据报道最佳的集水管数量为15。此外,热水消耗与系统性能之间也存在直接联系。随着时间的流逝,精力充沛的效率的变化趋势正在上升。最终,该效率达到了最高水平,约为5.4%。集热器的最高出口温度约为64摄氏度,发生在15:00至16:00 pm之间。清晨,需要一个辅助系统。但是,该支持系统在下午14:00之后关闭了周期,仅太阳周期就提供了所需的能量。理论和实验结果的比较表明,所开发模型具有预测热管太阳能热水器性能的能力,最大相对误差为8.4%,最大标准误差为1.91%。 (C)2016 Elsevier Ltd.保留所有权利。

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