JIA XIUCAN, LU CHENG, WANG XIAOPO, et al. Performance Analysis of Compression-assisted Absorption Refrigeration Cycles Using Low GWP Refrigerant/[P6,6,6,14][Cl] Working Pairs. [J]. Journal of refrigeration, 2023, 44(1).
JIA XIUCAN, LU CHENG, WANG XIAOPO, et al. Performance Analysis of Compression-assisted Absorption Refrigeration Cycles Using Low GWP Refrigerant/[P6,6,6,14][Cl] Working Pairs. [J]. Journal of refrigeration, 2023, 44(1). DOI: 10.3969/j.issn.0253-4339.2023.01.035.
This study investigates the performances of five low GWP (Global Warming Potential) refrigerant/[P6
6
6
14][Cl] working pairs in the compression-assisted single-effect absorption system. The studied refrigerants include hydrocarbon (HC) R290 and R600a
hydrofluoro-olefin (HFO) R1234yf
R1234ze(E)
and R1233zd(E). The NRTL model was utilized to correlate the vapor-liquid equilibrium data of five working pairs
and the performance improvement of the compression-assisted absorption system was verified against the traditional single-effect absorption system. Based on this
the effects of the generation and absorption temperatures on COP
exergy efficiency
and circulation ratio of five working pairs were analyzed. The results show that the implementation of a compressor in front of the absorber may significantly increase the COP of the system. Of the five working pairs
R290/[P6
6
6
14][Cl] exhibited the best performance; while R1233zd(E)/[P6
6
6
14][Cl] had the worst performance
and the maximum differences in the COP and exergic efficiency were 0.277 4 and 0.224 5
respectively. As the generation temperature increased
the COP and exergy efficiency of all working pairs had maximum values
whereas the circulation ratios decreased monotonically. As the absorption temperature increased
the COP and exergy efficiency of all working pairs decreased