Energy impact of the Internal Heat Exchanger in a horizontal freezing cabinet. Experimental evaluation with the R404A low-GWP alternatives R454C, R455A, R468A, R290 and R1270

被引:16
作者
Cabello, Ramon
Sanchez, Daniel
Llopis, Rodrigo
Andreu-Nacher, Alejandro
Calleja-Anta, Daniel
机构
[1] Jaume I University, Dep. of Mechanical Engineering and Construction, Campus de Riu Sec s/n, Castellón,E-12071, Spain
关键词
R404a; R290; R1270; R454c; R455A; R468A; REFRIGERATION CYCLE; DROP-IN; WORKING; R134A; REPLACEMENT; R1234YF; R152A; PUMP; IHX;
D O I
10.1016/j.ijrefrig.2022.02.007
中图分类号
O414.1 [热力学];
学科分类号
摘要
This work analyses the influence of the Internal Heat Exchan ger (IHX) on the energy performance of a vapor compression cycle associated with a freezing cabinet using different R404A low-GWP alternatives. Among them, the refrigerants R454C (GPW100=146), R455A (GPW100=146), R468A (GPW100=146), R290 (GPW100=5) and R1270 (GPW100=1.8) have been tested in a horizontal freezing cabinet maintaining a product target temperature of -20 degrees C at the heat rejection temperatures of 20, 30 and 40 degrees C. The results from tests show that the use of the IHX reduces energy consumption in all scenarios without significantly increasing the compressor's discharge temperature. For a test period of 16 h, the refrigerants that offer better reductions are R404A and R1270, followed by R455A, R290, R454C and R468A. The maximum energy saving is rated to 9.2% at the heat rejection temperature of 40 degrees C, demonstrating that the enhancement of the IHX is better as higher the heat rejection conditions are.
引用
收藏
页码:22 / 33
页数:12
相关论文
共 44 条
[1]  
Ahnefeld G., 1996, KI LUFTUND KALTETECH, V32, P202
[2]  
[Anonymous], 2012, Methods of calculating Total Equivalent Warming Impact (TEWI) 2012
[3]  
[Anonymous], 2017, 5 IIR C THERMOPHYSIC, P8
[4]  
[Anonymous], Directive (EU) 2018/2001 of the European Parliament and of the Council-of 11 December 2018-on the promotion of the use of energy from renewable sources (RED II Directive)
[5]   A criterion for predicting the possible advantage of adopting a suction/liquid heat exchanger in refrigerating system [J].
Aprea, C ;
Ascani, M ;
de Rossi, F .
APPLIED THERMAL ENGINEERING, 1999, 19 (04) :329-336
[6]  
ASERCOM, 2015, REFR GLID EFF PERF D, P1
[7]  
ASHRAE, 2019, ANSI/ASHRAE Standard 34-2019
[8]   Contribution of internal heat exchanger to transcritical R-744 cycle performance [J].
Boewe, DE ;
Bullard, CW ;
Yin, JM ;
Hrnjak, PS .
HVAC&R RESEARCH, 2001, 7 (02) :155-168
[9]   Energy evaluation of R152a as drop in replacement for R134a in cascade refrigeration plants [J].
Cabello, R. ;
Sanchez, D. ;
Llopis, R. ;
Catalan, J. ;
Nebot-Andres, L. ;
Torrella, E. .
APPLIED THERMAL ENGINEERING, 2017, 110 :972-984
[10]   Experimental comparison between R152a and R134a working in a refrigeration facility equipped with a hermetic compressor [J].
Cabello, R. ;
Sanchez, D. ;
Llopis, R. ;
Arauzo, I. ;
Torrella, E. .
INTERNATIONAL JOURNAL OF REFRIGERATION-REVUE INTERNATIONALE DU FROID, 2015, 60 :92-105