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Defrost improvement by heat pump refrigerant charge compensating

机译:通过热泵制冷剂补给来改善除霜

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During winters, the air-source heat pump often operates with substantial frost formation on the outdoor heat exchanger, and the frost layer has to be melted away periodically to keep a high heat pump coefficient of performance (COP). Otherwise, the unmelted frost layer and water will become high density frost or ice layer in heating mode. However, it is difficult to melt the frost layer in the defrosting cycle, where the effective defrosting time plays an important role in improving the defrosting ability. Generally, the defrosting time can be decreased by the following ways: increasing the refrigerant flow rate effectively, and rapidly establishing the suction pressure, discharge pressure, and the compressor power. A new heat pump defrost system with a refrigerant charge compensator, instead of the accumulator which is a key component for the frosting cycle performance, is developed in this paper. Furthermore, test results showed that the improved frost system with the compensator worked as expected, and its suction and discharge pressures and the power of the compressor during the defrosting were much larger than before.
机译:在冬季,空气源热泵经常在室外热交换器上结霜时运行,并且必须定期融化霜层以保持较高的热泵性能系数(COP)。否则,在加热模式下,未融化的霜层和水将变成高密度霜或冰层。然而,在除霜循环中很难融化霜层,其中有效的除霜时间对于提高除霜能力起着重要的作用。通常,可以通过以下方式减少除霜时间:有效地增加制冷剂流量,并迅速建立吸入压力,排出压力和压缩机功率。本文开发了一种新的带有制冷剂补给补偿器的热泵除霜系统,而不是作为结霜循环性能关键部件的蓄能器。此外,测试结果表明,带有补偿器的改进型除霜系统能够按预期工作,除霜过程中的吸,排气压力和压缩机功率比以前大得多。

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