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使用R134a/R1234yf混合物的汽车空调性能特性

Performance Characteristics of Automobile Air Conditioning Using the R134a/R1234yf Mixture.

作者信息

Shin Yunchan, Kim Taejung, Lee Areum, Cho Honghyun

机构信息

Department of Mechanical Engineering, Graduate School of Chosun University, Gwangju 61452, Korea.

Department of Automobile, Yeongju Campus of Korea Polytechnics VI, Yeongju 36142, Korea.

出版信息

Entropy (Basel). 2019 Dec 19;22(1):4. doi: 10.3390/e22010004.

Abstract

In this study, the energy and exergy of an automobile refrigeration system using R134a and R134a/R1234yf were analyzed experimentally with respect to outdoor air temperature and compressor speed. As outdoor air temperature increased from 32.5 °C to 37.5 °C, the coefficient of performance (COP) and total exergy destruction rate of the refrigeration system using Mix30 decreased by 5.19% and 25.8% on average, compared to that of the system using R134a. The exergy efficiency of the Mix30 refrigeration system was on average 21.8% higher than that of the R134a system. As the compressor rotating speed increased from 1000 to 2000 rpm, the cooling capacity of the refrigeration system using R134a and R134a/R1234yf increased, while the COP decreased. The COP and total exergy destruction rate of the refrigeration system using Mix30 decreased by 4.82% and 19.5%, compared to that of the system using R134a. The exergy efficiency of the Mix30 refrigeration system increased on average by 20.7%, compared to that of the R134a system. The total exergy destruction rate of the automobile refrigeration system using R134a/R1234yf decreased with increase in R1234yf, while exergy efficiency increased. In addition, the exergy destruction rate of the automobile refrigeration system decreased as the amount of R1234yf in the R134a/R1234yf automobile refrigeration system increased.

摘要

在本研究中,针对室外空气温度和压缩机转速,对使用R134a以及R134a/R1234yf的汽车制冷系统的能量和㶲进行了实验分析。随着室外空气温度从32.5℃升高到37.5℃,与使用R134a的系统相比,使用Mix30的制冷系统的性能系数(COP)和总㶲破坏率平均分别下降了5.19%和25.8%。Mix30制冷系统的㶲效率平均比R134a系统高21.8%。随着压缩机转速从1000转/分钟增加到2000转/分钟,使用R134a和R134a/R1234yf的制冷系统的制冷量增加,而COP下降。与使用R134a的系统相比,使用Mix30的制冷系统的COP和总㶲破坏率分别下降了4.82%和19.5%。Mix30制冷系统的㶲效率与R134a系统相比平均提高了20.7%。使用R134a/R1234yf的汽车制冷系统的总㶲破坏率随着R1234yf含量的增加而降低,而㶲效率则提高。此外,随着R134a/R1234yf汽车制冷系统中R1234yf含量的增加,汽车制冷系统的㶲破坏率降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb7b/7516462/f0c0453f16da/entropy-22-00004-g001.jpg

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