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An experimental study on even frosting performance of an air source heat pump unit with a multi-circuit outdoor coil

机译:具有多回路室外盘管的空气源热泵机组结霜性能的实验研究

摘要

When the surface temperature of the outdoor coil in an air source heat pump (ASHP) unit is lower than both the air dew point and freezing point of water, frost can be formed and accumulated over outdoor coil's surface. On the other hand, an outdoor coil normally has multiple parallel circuits on its refrigerant side for minimized refrigerant pressure loss and enhanced heat transfer efficiency. Currently, most attentions were paid to the experimental and numerical studies on defrosting with different methods, without however paying attention to the distribution of frost accumulation on the multi-circuit outdoor coil. The phenomenon of uneven frosting exists, which also maybe the most important reason of uneven defrosting for an ASHP unit with a multi-circuit outdoor coil. Therefore, in this study, a comparative and experimental study on system frosting performance when frost accumulated on a three-circuit outdoor coil's surface in an ASHP unit at different frosting evenness values (FEVs) has been carried out. Experimental results indicated that, when the FEV was increased from 75.7% to 90.5% for an ASHP unit with a three-circuit outdoor coil, the COP could be increased from 4.10 to 4.26 at a 3600 s frosting process, and increased from 3.18 to 4.00 at its last 600 s.
机译:当空气源热泵(ASHP)单元中的室外盘管的表面温度低于水的空气露点和冰点时,霜可能会形成并积聚在室外盘管的表面。另一方面,室外盘管通常在其制冷剂侧具有多个并联回路,以最小化制冷剂压力损失并提高传热效率。目前,最关注的是采用不同方法进行除霜的实验和数值研究,而没有关注多回路室外盘管上霜的积累分布。存在结霜现象,这也可能是带有多回路室外线圈的ASHP机组除霜不均匀的最重要原因。因此,在本研究中,已经进行了在不同结霜均匀度值(FEV)下ASHP单元中三回路室外盘管表面积霜的系统结霜性能的比较和实验研究。实验结果表明,当带三回路户外线圈的ASHP装置的FEV从75.7%增加到90.5%时,在3600 s的结霜过程中,COP可以从4.10增加到4.26,而从3.18增加到4.00。在最后600秒。

著录项

  • 作者

    Song M; Xia L; Mao N; Deng S;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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