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Experimental investigations on using phase change material for performance improvement of storage-enhanced heat recovery room air-conditioner

机译:利用相变材料改善储热式房间空调器性能的实验研究

摘要

The use of SEHRAC (storage-enhanced heat recovery room air-conditioner) for space cooling and free water heating has been confirmed effective but its overall performance will unavoidably be affected by the associated increase in water temperature in the heat recovery water tank. Measures to enhance the heat storage capacity of the water tank will thus be beneficial to the overall performance of SEHRAC. But virtually none has been done to date. For achieving this objective, the use of PCM (phase change material) in the water tank was proposed in this study. A prototype SEHRAC integrated with an expanded graphite/paraffin composite PCM was designed and setup in a test facility for laboratory experiments. Two identical sets of experiments with and without the use of PCM (wPCM and woPCM scenarios) under a range of outdoor temperature conditions were conducted. It was found that the wPCM scenario, as compared to the woPCM scenario, the overall coefficient of performance was 6.9%-9.8% higher and the heat retention time of the tank water was 21.1% longer. The results confirmed that the performance of SEHRAC could be improved by the use of PCM.
机译:已经证实将SEHRAC(存储增强型热回收室空调)用于空间冷却和自由热水是有效的,但其整体性能将不可避免地受到热回收水箱中水温升高的影响。因此,采取措施提高水箱的储热能力将有利于SEHRAC的整体性能。但是到目前为止,实际上还没有做过。为了实现这一目标,本研究提出在水箱中使用PCM(相变材料)。 SEHRAC的原型与膨胀的石墨/石蜡复合材料PCM集成在一起,被设计并安装在用于实验室实验的测试设施中。在一定范围的室外温度条件下,使用和不使用PCM进行了两组相同的实验(wPCM和woPCM方案)。发现与woPCM方案相比,wPCM方案的整体性能系数提高了6.9%-9.8%,储罐水的保温时间延长了21.1%。结果证实,通过使用PCM可以提高SEHRAC的性能。

著录项

  • 作者

    Jia J; Lee WL;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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