首页> 外文期刊>International Journal of Refrigeration >Performance analysis and comprehensive comparison between CO2 and CO2/ethane azeotropy mixture as a refrigerant used in single-stage and two-stage vapor compression transcritical cycles
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Performance analysis and comprehensive comparison between CO2 and CO2/ethane azeotropy mixture as a refrigerant used in single-stage and two-stage vapor compression transcritical cycles

机译:CO2和CO2 /乙烷共沸混合物作为单阶段和两阶段蒸汽压缩跨临界循环的制冷剂的性能分析及综合比较

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In this study, the performance of a two-stage compression transcritical cycle with an expander (TCE) and a conventional single-stage compression transcritical cycle with a throttling valve (SCT) using pure CO2 and CO2/ethane (0.78/0.22, mass fraction) azeotropy mixture as a refrigerant in an air-source heat pump water heater (ASHPWH) system is investigated. From the point of the first and second laws of thermodynamics, the theoretical analysis of cycle characteristics based on the two systems with both refrigerants are carried out and compared in detail. The results show that the COP of TCE cycle with CO2 and CO2/ethane are at least 57.4% and 81.6% higher than those of the SCT cycle under the studied conditions. The main attractiveness of the CO2/ethane azeotropy refrigerant is connected with its lower discharge temperature compared with the pure CO2, which can prolong the compressor lifetime. In addition, the CO2/ethane azeotropy refrigerant can obviously reduce the evaporation temperature, which is conducive to the ASHPWH system in cold region. (C) 2020 Elsevier Ltd and IIR. All rights reserved.
机译:在本研究中,使用纯CO 2和CO 2 /乙烷(0.78 / 0.22,质量分数0.78 / 0.22通过调查了作为空气源热泵热泵(ASHPWH)系统中的制冷剂的共沸混合物。从第一和第二种定律的热力学定律来看,基于两个制冷剂的两个系统的循环特性的理论分析进行详细,并详细比较。结果表明,具有CO 2和CO 2 /乙烷的TCE循环COP比研究条件下的SCT周期高至少57.4%和81.6%。与纯二氧化碳相比,CO 2 /乙烷共沸制冷剂的主要吸引力与其较低的放电温度相比,这可以延长压缩机寿命。此外,CO 2 /乙烷共沸制冷剂可明显降低蒸发温度,这有利于寒冷地区的ASHPWH系统。 (c)2020 Elsevier Ltd和IIR。版权所有。

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