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An experimental investigation on reverse-cycle defrosting performance for an air source heat pump using an electronic expansion valve

机译:使用电子膨胀阀的空气源热泵逆循环除霜性能的实验研究

摘要

When an air source heat pump (ASHP) operates in heating mode, frost can be accumulated on the surface of its finned outdoor coil. Frosting deteriorates the operation and energy efficiency of the ASHP and periodic defrosting becomes necessary. Currently the most widely used standard defrosting method for ASHPs is reverse cycle defrost. On the other hand, electronic expansion valves (EEVs) are commonly used in heat pump/refrigeration systems, including ASHP units, as throttle regulators of refrigerant flow. This paper reports on an experimental investigation of the performance of a reverse cycle defrost operation for a 6.5. kW experimental heating capacity residential ASHP whose outdoor coil had four-parallel refrigerant circuits, and with an EEV as the refrigerant flow throttle regulator. The detailed descriptions of the experimental ASHP unit and the experimental procedures of ASHP are firstly presented. This is followed by reporting the comparative experiments of two control strategies for the EEV to investigate their effects on defrosting performance: the EEV being fully open and the EEV being regulated by a degree of refrigerant superheat (DS) controller. Experimental results revealed that when the EEV was regulated by the DS controller during defrosting, a higher defrosting efficiency and less heat wastage would be resulted in.
机译:当空气源热泵(ASHP)在加热模式下运行时,霜可能会在其带翅片的室外盘管表面积聚。结霜会降低ASHP的运行和能源效率,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。另一方面,电子膨胀阀(EEV)通常用作热泵/制冷系统,包括ASHP单元,作为制冷剂流量的节流阀。本文针对6.5的逆循环除霜操作的性能进行了实验研究。 kW实验热容量住宅ASHP,其室外盘管具有四个并联的制冷剂回路,并带有EEV作为制冷剂流量节流阀。首先介绍了ASHP实验装置的详细说明和ASHP实验程序。接下来是报告两种EEV控制策略的对比实验,以研究它们对除霜性能的影响:EEV完全打开,EEV由制冷剂过热度(DS)控制器调节。实验结果表明,除霜过程中通过DS控制器调节EEV时,除霜效率更高,浪费的热量更少。

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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