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A study of the reverse cycle defrosting performance on a multi-circuit outdoor coil unit in an air source heat pump - Part I : experiments

机译:空气源热泵中多回路室外盘管机组逆循环除霜性能的研究第一部分:实验

摘要

When an air source heat pump (ASHP) unit operates in heating mode, frost can be accumulated on the surface of its finned outdoor coil which normally has multiple parallel circuits on its refrigerant side for minimized refrigerant pressure loss and enhanced heat transfer efficiency. On its airside, however, there is usually no segmentation corresponding to the number of refrigerant circuit. Frosting deteriorates the operation and energy efficiency of the ASHP unit and periodic defrosting becomes necessary. Currently the most widely used standard defrosting method for ASHPs is reverse cycle defrost. This paper, the first part of a two-part series, reports on the experimental part of a study of the reverse cycle defrosting performance on a multi-circuit outdoor coil unit in an experimental 6.5. kW heating capacity residential ASHP unit. Firstly the experimental ASHP unit is described and experimental procedures detailed. Secondly, the experimental results are reported. This is followed by the discussion on the effects of downwards flowing of the melted frost along a multi-circuit outdoor coil surface on defrosting performance. Finally, the evaluation of the defrosting efficiency for the experimental ASHP unit is provided. In the second part of the series, a modeling analysis on the effects of downwards flowing of the melted frost along the multi-circuit outdoor coil surface on defrosting performance of the experimental ASHP unit will be presented.
机译:当空气源热泵(ASHP)单元以加热模式运行时,霜可能会积聚在其翅片式室外盘管的表面上,该盘管通常在其制冷剂侧具有多个并联回路,从而将制冷剂的压力损失降至最低,并提高了传热效率。然而,在其空气侧,通常没有对应于制冷剂回路数量的分段。结霜会使ASHP单元的运行和能源效率恶化,因此必须定期除霜。当前,用于ASHP的最广泛使用的标准除霜方法是反向循环除霜。本文是由两部分组成的系列文章的第一部分,报告了在实验6.5中研究多回路室外盘管机组的逆循环除霜性能的实验部分。 kW住宅ASHP供热能力。首先描述了实验ASHP单元,并详细说明了实验程序。其次,报道了实验结果。接下来是关于融化的霜沿着多回路室外盘管表面向下流动对除霜性能的影响的讨论。最后,提供了对ASHP实验装置除霜效率的评估。在该系列的第二部分中,将对融化的霜沿着多回路室外盘管表面向下流动对ASHP实验装置除霜性能的影响进行建模分析。

著录项

  • 作者

    Qu M; Xia L; Deng S; Jiang Y;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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