Evaluation of non-azeotropic mixtures containing HFOs as potential refrigerants in refrigeration and high-temperature heat pump systems

被引:0
作者
ShengJun Zhang
HuaiXin Wang
Tao Guo
机构
[1] Tianjin University,Department of Thermal Energy and Refrigeration Engineering
来源
Science China Technological Sciences | 2010年 / 53卷
关键词
hydrofluoro-olefin; non-azeotropic mixtures; refrigerant; air-conditioning system; high-temperature heat pump;
D O I
暂无
中图分类号
学科分类号
摘要
With the increasing environmental concern on global warming, hydrofluoro-olefin (HFOs), possessing low GWP, has attracted great attention of many researchers recently. In this study, non-azeotropic mixtures composed of HFOs (HFO-1234yf, HFO-1234ze(z), HFO-1234ze(e) and HFO-1234zf) are developed to substitute for HFC-134a and CFC-114 in air-conditioning and high-temperature heat pump systems, respectively. The cycle performances were evaluated by an improved theoretical cycle evaluation methodology. The results showed that all the mixtures proposed herein were favorable refrigerants with excellent thermodynamic cycle performances. M1A presented lower discharge temperature and pressure ratio and higher COPc than that of HFC-134a. The volumetric cooling capacity was similar to HFC-134a. It can be served as a good environmentally friendly alternative to replace HFC-134a. M3H delivered similar discharge temperature as CFC-114 did. And the COPh was 3% higher. It exhibits excellent cycle performance in high-temperature heat pump and is a promising refrigerant to substitute for CFC-114. And the gliding temperature differences enable them to exhibit better coefficient of performance by matching the sink/source temperature in practice. Because the toxicity, flammability and other properties are not investigated in detail, extensive toxicity and flammability testing needs to be conducted before they are used in a particular application.
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页码:1855 / 1861
页数:6
相关论文
共 31 条
[1]  
Calm J. M.(2008)The next generation of refrigerants-Historical review, considerations, and outlook Int J Refrig 31 1123-1133
[2]  
Brown J. S.(2009)The fluorinated olefin R-1234ze(Z) as a high-temperature heat pumping refrigerant Int J Refrig 32 1412-1422
[3]  
Ziliob C.(2009)HFOs new, low global warming potential refrigerants ASHRAE J 51 22-29
[4]  
Cavallini A.(1985)Internal performance of a refrigerant mixture in a two-evaporator refrigerator ASHRAE Trans 91B 241-249
[5]  
Brown J. S.(2003)Performance analysis of a vapor compression heat pump using nonazeotropic refrigerant mixtures Energy Convers Manage 44 267-282
[6]  
Stoecker W. F.(1998)Investigation of the potential effect of zeotropic refrigerant mixture on performance of a hot-water heat pump ASHRAE Trans 104 387-394
[7]  
Yilmaz M.(1998)Potential of the zeotropic mixture R-22/R-142b in high-temperature heat pump water heaters with capacity modulation ASHRAE Trans 104 418-429
[8]  
Smit F. J.(2005)Pseudo-critical compressibility factor J Eng Thermophys 26 373-375
[9]  
Meyer J. P.(1982) and slope f in pt equation of state for 33 refrigerants (in Chinese) Chem Eng Sci 37 463-473
[10]  
Liebenberg L.(2010)A new cubic equation of state for fluids and fluid mixtures J Chem Eng Data 55 201-204