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An experimental study on defrosting performance for an air source heat pump unit at different frosting evenness values with melted frost local drainage

机译:融化霜局部排水下不同霜均匀度下空气源热泵机组除霜性能的实验研究

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A previous experimental study reported that the defrosting performance could be increased when the defrosting process started at a higher frosting evenness value (FEV) for an air source heat pump (ASHP) unit with a vertically installed multi-circuit outdoor coil. In that study, to calculate the FEVs and thus fix the opening degrees of stop valves, melted frost of each circuit was collected by using water collecting trays installed between circuits. Thereafter, these trays were taken away to model a regular multi circuit outdoor coil. However, during defrosting, the downward flowing melted frost from up circuit(s) along the surface of coil due to gravity would adversely affect the defrosting performance of down circuit(s). Different negative effects of downward flowing melted frost would make the effects of FEV on defrosting performance hard to qualitatively and quantitatively confirmed. Therefore, in this study, an experimental study on defrosting performance for an ASHP unit at different FEVs with melted frost local drainage was carried out. Finally, experimental results indicated that the defrosting duration could be shortened by about 11.2% and defrosting efficiency increased by about 5.7% as the FEV increased from 79.4% to 96.6%. (C) 2016 Elsevier Ltd. All rights reserved.
机译:先前的一项实验研究报告说,对于具有垂直安装的多回路室外盘管的空气源热泵(ASHP)单元,在较高的结霜均匀度值(FEV)处开始除霜过程时,可以提高除霜性能。在该研究中,为了计算FEV,从而确定截止阀的开度,使用安装在回路之间的集水盘收集每个回路的融霜。此后,将这些托盘取出以模拟常规的多回路室外线圈。然而,在除霜期间,由于重力而从上回路沿线圈表面向下流动的融化霜会不利地影响下回路的除霜性能。融霜向下流动的不同负面影响将使得FEV对除霜性能的影响难以定性和定量地确定。因此,在这项研究中,进行了在融化霜局部排水的不同FEV上对ASHP机组进行除霜性能的实验研究。最后,实验结果表明,当FEV从79.4%增加到96.6%时,除霜时间可缩短约11.2%,除霜效率提高约5.7%。 (C)2016 Elsevier Ltd.保留所有权利。

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