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Thermodynamic Analysis of Transcritical CO2 Ejector Expansion Refrigeration Cycle with Dedicated Mechanical Subcooling

机译:跨临界CO2喷射器膨胀制冷循环热力学分析,具有专用机械过冷

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摘要

The new configuration of a transcritical CO2 ejector expansion refrigeration cycle combined with a dedicated mechanical subcooling cycle (EMS) is proposed. Three mass ratios of R32/R1234ze(Z) (0.4/0.6, 0.6/0.4, and 0.8/0.2) were selected as the refrigerants of the mechanical subcooling cycle (MS) to further explore the possibility of improving the EMS cycle’s performance. The thermodynamic performances of the new cycle were evaluated using energetic and exergetic methods and compared with those of the transcritical CO2 ejector expansion cycle integrated with a thermoelectric subcooling system (ETS). The results showed that the proposed cycle presents significant advantages over the ETS cycle in terms of the ejector performance and the system energetic and exergetic performances. Taking the EMS cycle using R32/R1234ze(Z) (0.6/0.4) as the MS refrigerant as an example, the improvements in the coefficient of performance and system exergy efficiency were able to reach up to 10.27% and 15.56%, respectively, at an environmental temperature of 35 °C and evaporation temperature of −5 °C. Additionally, the advantages of the EMS cycle were more pronounced at higher environmental temperatures.
机译:提出了与专用机械过冷循环(EMS)组合的跨临界CO2喷射器膨胀制冷循环的新配置。选择R32 / R1234ze(Z)的三种质量比(0.4 / 0.6,0.6 / 0.4和0.8 / 0.2)作为机械过冷循环(MS)的制冷剂,以进一步探索改善EMS循环性能的可能性。使用能量和淬火方法评估新循环的热力学性能,并与与热电过冷系统(ETS)相结合的跨临界CO2喷射器膨胀循环的热力学性能。结果表明,在喷射器性能和系统精力量和前进性能方面,所提出的周期具有与ETS周期相比的显着优势。使用R32 / R1234ZE(Z)(0.6 / 0.4)作为MS制冷剂作为示例,通过r32 / r1234(z)(0.6 / 0.4)进行EMS循环,分别能够分别达到高达10.27%和15.56%的高达10.27%和15.56%环境温度为35℃,蒸发温度为-5℃。另外,EMS循环的优点在更高的环境温度下更加明显。

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