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首页> 外文期刊>International Journal of Refrigeration >Energy improvements of CO2 transcritical refrigeration cycles using dedicated mechanical subcooling
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Energy improvements of CO2 transcritical refrigeration cycles using dedicated mechanical subcooling

机译:使用专用机械过冷技术改善CO2跨临界制冷循环的能源

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摘要

In this work the possibilities of enhancing the energy performance of CO2 transcritical refrigeration systems using a dedicated mechanical subcooling cycle are analysed theoretically. Using simplified models of the cycles, the modification of the optimum operating conditions of the CO2 transcritical cycle by the use of the mechanical subcooling are analysed and discussed. Next, for the optimum conditions, the possibilities of improving the energy performance of the transcritical cycle with the mechanical subcooling are evaluated for three evaporating levels (5, 5 and 30 degrees C) for environment temperatures from 20 to 35 degrees C using propane as refrigerant for the subcooling cycle. It has been observed that the cycle combination will allow increasing the COP up to a maximum of 20% and the cooling capacity up to a maximum of 28.8%, being both increments higher at high evaporating levels. Furthermore, the results indicate that this cycle is more convenient for environment temperatures above 25 degrees C. Finally, the results using different refrigerants for the mechanical subcooling cycle are presented, where no important differences are observed. (C) 2015 Elsevier Ltd and IIR. All rights reserved.
机译:在这项工作中,理论上分析了使用专用的机械过冷循环来提高CO2跨临界制冷系统的能量性能的可能性。使用简化的循环模型,分析和讨论了使用机械过冷技术对CO2跨临界循环的最佳运行条件的修改。接下来,对于最佳条件,使用丙烷作为制冷剂,针对环境温度为20至35摄氏度的三种蒸发水平(5、5和30摄氏度),评估了通过机械过冷提高跨临界循环的能量性能的可能性。用于过冷循环。已经观察到,循环组合将允许将COP最高增加到最大20%,将冷却能力最高增加到28.8%,这两种情况在高蒸发水平下都会增加。此外,结果表明该循环对于环境温度高于25摄氏度更为方便。最后,给出了在机械过冷循环中使用不同制冷剂的结果,但未观察到重要差异。 (C)2015 Elsevier Ltd和IIR。版权所有。

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