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The Effects of Wet Compression by the Electronic Expansion Valve Opening on the Performance of a Heat Pump System

机译:电子膨胀阀开口对热泵系统性能的湿式压缩的影响

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In this study, by controlling the Electronic Expansion Valve opening, the influence of wet compression on a heat pump system was experimentally investigated in different heating conditions. The results demonstrate that the discharge temperature decreased and the mass flow rate increased, due to quality of the rising liquid droplets. It was also found that the heating capacity and power input of wet compression increased more than that of dry compression, with a superheat of 10 °C. The maximum COP (Coefficient of Performance) exists at a specific quality of ca. 0.94 to 0.90, as the power input in the region of wet compression is proportionally larger than the increase in the heating capacity, according to the decreasing quality. When the Entering Water Temperature of the Outdoor Heat Exchanger was 10 °C, 5 °C, and 0 °C, the COP increased by a maximum of ca. 12.4%, 10.6%, and 10.2%, respectively, in comparison to the superheat of 10 °C. In addition, the superheat at the discharge line is proposed as a proper controlling parameter to adjust the quality at the suction line, by varying the opening of the expansion valve during wet compression.
机译:在本研究中,通过控制电子膨胀阀开口,在不同的加热条件下实验研究了在热泵系统上对热泵系统的影响。结果表明,由于上升液滴的质量,放电温度降低并且质量流量增加。还发现,湿式压缩的加热容量和电力输入增加了多于干压缩的电力,超热为10°C。 CA的特定质量存在最大COP(性能系数)。 0.94至0.90,由于湿压缩区域中的电源输入比较大于加热容量的增加,根据质量的降低。当室外热交换器的进入水温为10°C,5°C和0°C时,COP增加了最多CA.与10°C的过热相比,分别为12.4%,10.6%和10.2%。另外,通过在湿式压缩期间改变膨胀阀的开口来提出排出管线处的过热作为适当的控制参数以调节吸入管线处的质量。

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