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Experimental study on an inverter heat pump air conditioner with a vapor-bypassed evaporator

机译:倒绕蒸汽蒸发器逆变器热泵空调的实验研究

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This paper presents an experimental study on the performance of an inverter heat pump air conditioner with a vapor-bypassed evaporator. The vapor-bypassed evaporator, in which a phase separator is set in the middle of the refrigerant circuit to bypass vapor refrigerant, can reduce the refrigerant pressure drop and enhance the system overall performance. The tested heat pump system can be operated at two modes, i.e., vapor-bypassed (VB) mode and conventional heat pump (CH) mode. The testing results indicate that as the heating capacity ranges 1900-4900 W, the COP of VB mode is improved by 4.1%-11.6% over CH mode under the H1 condition (indoor: 20.0/15.0 degrees C; outdoor: 7.0/6.0 degrees C). When operated under the H2 condition (indoor: 20.0/15.0 degrees C; outdoor: 2.0/1.0 degrees C; frosting condition), the system at VB mode yields 11.2% higher average heating capacity and 4.4% higher COP over CH mode at a fixed compressor speed of 95 Hz. Generally, using the vapor-bypassed evaporator has a great potential for improving the performance of a heat pump air conditioner especially under high heating capacity conditions. (C) 2019 Elsevier Ltd and IIR. All rights reserved.
机译:本文介绍了蒸汽旁路蒸发器的逆变器热泵空调的性能的实验研究。旁路蒸发蒸发器,其中相分离器在制冷剂回路中间设定为旁路蒸汽制冷剂,可以降低制冷剂压力下降并提高系统整体性能。测试的热泵系统可以以两种模式操作,即逐个绕过(VB)模式和传统的热泵(CH)模式。测试结果表明,随着加热容量的范围为1900-4900W,在H1条件下,VB模式的COP模式在CH模式下提高了4.1%-11.6%(室内:20.0 / 15.0℃;户外:7.0 / 6.0度C)。在H2条件下运行时(室内:20.0 / 15.0℃;户外:2.0 / 1.0度;结霜条件),VB模式下的系统在固定的情况下产生11.2%的平均加热容量和4.4%的COP模式。压缩机速度为95 Hz。通常,使用蒸气旁路蒸发器具有尤其是在高加热容量条件下提高热泵空调的性能的巨大潜力。 (c)2019年Elsevier Ltd和IIR。版权所有。

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