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Experimental investigation of performance and exergy analysis of automotive air conditioning systems using refrigerant R1234yf at various compressor speeds

机译:在不同压缩机转速下使用制冷剂R1234yf的汽车空调系统性能和火用分析的实验研究

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This paper presents an experimental performance investigation and exergy analysis using R1234yf in an automotive air conditioning system. The R1234yf system with an internal heat exchanger (IHX) was compared with an R1234yf system without the IHX and an R134a system. The R1234yf system had 4.0-7.0% smaller cooling capacity and 3.6-4.5% lower COP compared to the R134a system. With the IHX, the R1234yf system showed almost equivalent cooling capacity to the R134a system. The COP of the R1234yf system with the IHX is lower than that of the R134a system by 0.3-2.9% for a compressor speed of 8001800 rpm. The COP increased by 0.9% at a compressor speed of 2500 rpm. The second law efficiency of the R1234yf system was 3.4-4.6% lower than that of the R134a system at all compressor speeds. The second law efficiency of R1234yf with the IHX was improved by 1.5-4.6% compared to the R1234yf system without the IHX. The EDR of the R1234yf system was 0.5-3.3% higher than that of the R134a system in the range of 800-1800 rpm. However, the R1234yf system with the IHX had 1.2% lower EDR than the R134a system at a compressor speed of 2500 rpm. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了在汽车空调系统中使用R1234yf进行的实验性能研究和火用分析。将带有内部热交换器(IHX)的R1234yf系统与没有IHX的R1234yf系统和R134a系统进行了比较。与R134a系统相比,R1234yf系统的制冷量小4.0-7.0%,COP降低3.6-4.5%。使用IHX,R1234yf系统显示出与R134a系统几乎相同的冷却能力。对于8001800 rpm的压缩机速度,带有IHX的R1234yf系统的COP比R134a系统的COP低0.3-2.9%。在2500 rpm的压缩机转速下,COP增加了0.9%。在所有压缩机速度下,R1234yf系统的第二定律效率都比R134a系统的第二定律效率低3.4-4.6%。与没有IHX的R1234yf系统相比,具有IHX的R1234yf的第二定律效率提高了1.5-4.6%。在800-1800 rpm的范围内,R1234yf系统的EDR比R134a系统的EDR高0.5-3.3%。但是,在2500 rpm的压缩机速度下,带有IHX的R1234yf系统的EDR比R134a系统低1.2%。 (C)2016 Elsevier Ltd.保留所有权利。

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