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A modeling study on alleviating uneven defrosting for a vertical three-circuit outdoor coil in an air source heat pump unit during reverse cycle defrosting

机译:反向循环除霜过程中减轻空气源热泵机组垂直三回路室外盘管除霜不均的模型研究

摘要

Reverse cycle defrosting is the most widely used standard defrosting method for air source heat pump (ASHP) units. It was suggested in previous experimental studies that downwards flowing of the melted frost over a vertical multi-circuit outdoor coil in an ASHP unit has negative effects on reverse cycle defrosting performance. To quantitatively study the negative effects, an experimental study and a modeling study on draining away locally the melted frost for an experimental ASHP unit with a three-circuit outdoor coil were carried out and separately reported. However, for exiting ASHP units, it is hardly possible to install water collecting trays between circuits. To alleviate uneven defrosting for a vertical multi-circuit outdoor coil in an existing ASHP unit, an effective alternative is to vary the heat supply to each refrigerant circuit by varying the opening values of modulating valves installed at an inlet pipe to each circuit. In this paper, a modeling study on varying heat (via refrigerant) supply to each refrigerant circuit in a three-circuit outdoor coil to alleviate uneven defrosting is reported. Finally, in the designed three study cases, defrosting energy use could be decreased to 94.6%, as well as a reduction of 7 s in defrosting duration by fully closing the modulating valve on the top circuit when its defrosting terminated.
机译:逆循环除霜是空气源热泵(ASHP)单元使用最广泛的标准除霜方法。以前的实验研究表明,融化的霜向下流过ASHP单元中的垂直多回路室外盘管,会对反向循环除霜性能产生负面影响。为了定量研究负面影响,对带有三回路室外线圈的ASHP实验装置进行了局部排放融化霜的实验研究和模型研究,并分别进行了报道。但是,对于现有的ASHP装置,几乎不可能在回路之间安装集水盘。为了减轻现有的ASHP单元中的垂直多回路室外盘管的不均匀除霜,有效的替代方案是通过改变安装在每个回路的入口管上的调节阀的开度来改变对每个制冷剂回路的供热。在本文中,对通过改变向三回路室外盘管中每个制冷剂回路供热(通过制冷剂)的热量进行建模研究,以减轻不均匀的除霜效果。最后,在设计的三个研究案例中,当除霜终止时,通过完全关闭顶部回路上的调节阀,可以将除霜能耗降至94.6%,并将除霜时间减少7 s。

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