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Performance evaluation of a solar water heater integrated with a PCM nanocomposite TES at various inclinations

机译:集成了PCM纳米复合材料TES的太阳能热水器在不同角度下的性能评估

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摘要

The present work presents and analyzes the results acquired from outdoor experimental measurements of a flat plate solar collector integrated with built-in thermal energy storage. Paraffin wax as a PCM and a nanocomposite of paraffin wax with 1.0 wt% of 20-nm nano-Cu particles were tested as the energy storage medium for TES. Three cases have been investigated, namely without PCM, with PCM, and with the Cu-PCM nanocomposite, at 10°, 20°, and 30° inclination angles of each case. The system performance was evaluated for water heating. The process involved a total change of the 60-1 water tank at 7:00 PM and 7:00 AM. The use of water circulation of 0.5 kg/min and setting the collector at a 10° inclination angle was found to be the best operational condition. The measurement result of the tank water temperature at 7:00 AM, after 24 h of operation, was 35.1 ℃ when the system operated without TES, while the operation with the PCM and with the Cu-PCM nanocomposite resulted in 40.1 ℃ and 40.7 ℃ tank water temperatures, respectively. The best performances analyzed were at 10°, with efficiencies of 47.6%, 51.1% and 52.0% for the cases without PCM, with PCM and with Cu-PCM nanocomposite, respectively. This indicates that the enhancement of the system using TES with paraffin wax is considerable, while further enhancement is not significant in the case of nanocomposite. Further measurements with various flow rates are recommended to investigate the performance of the developed solar-TES integrated system.
机译:本工作介绍和分析从集成有内置热能储存器的平板太阳能集热器的室外实验测量中获得的结果。测试了作为PCM的石蜡和PCM与1.0 wt%的20-nm纳米Cu粒子的纳米复合材料作为TES的储能介质。已经研究了三种情况,即没有PCM,有PCM和有Cu-PCM纳米复合材料,每种情况下的倾斜角度分别为10°,20°和30°。评价系统性能以进行水加热。该过程涉及在7:00 PM和7:00 AM更换60-1水箱。发现使用0.5 kg / min的水循环并将集热器设置为10°倾斜角是最佳的操作条件。在不使用TES的情况下运行24小时后,在上午7:00时,水箱水温的测量结果为35.1℃,而在使用PCM和使用Cu-PCM纳米复合材料的情况下,该温度为40.1℃和40.7℃水箱水温分别。分析的最佳性能是在10°时,对于没有PCM,带有PCM和带有Cu-PCM纳米复合材料的情况,效率分别为47.6%,51.1%和52.0%。这表明使用带有石蜡的TES对系统的增强是相当大的,而在纳米复合材料的情况下,进一步的增强并不明显。建议使用各种流速进行进一步测量,以研究已开发的solar-TES集成系统的性能。

著录项

  • 来源
    《Solar Energy》 |2014年第11期|82-92|共11页
  • 作者单位

    Mech. Eng. Dept., Universiti Teknologi PETRONAS, 31750 Tronoh, Perak, Malaysia;

    Department of Mechanical Engineering, Politeknik Ungku Omar, 31400 Ipoh, Perak, Malaysia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    PCM; Solar collector; Nanocomposite; TES;

    机译:PCM;太阳能集热器;纳米复合材料TES;

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