期刊文献+

R744/R1270用于热泵热水器的分析探讨 被引量:1

Thermodynamic Analysis on Heat Pump Water Heater System Using R744/R1270 Binary Mixtures as Refrigerant
下载PDF
导出
摘要 研究了将两种环保工质R744和R1270混合用于热泵热水器系统时的循环性能,并在热泵热水器名义工况条件下,将其与常见热泵工质R22的循环性能进行分析比较。结果表明:混合工质R744/R1270系统的最优质量配比为16/84,对应的最优制热COPh值为4.770,比R22系统提高了9.63%;同时,在最优质量配比区间,COPh值变化较小;压缩机绝热压缩效率对COPh值影响显著,但对最优质量配比的影响较小。 In this paper, the mixtures of carbon dioxide (R744) and propylene (R1270) are chosen as working fluid used in heat pump water heater system. Under the nominal working condition of heat pump system in China, the system performance is analyzed theoretically. The calculation results illustrate that there exists a maximum heating coefficient of performance (COPh) when the mass fraction of R744/R1270 is 16/84 which is defined as optimum mass fraction. In the same assumptions and working conditions, the maximum COPh of heat pump system with the mixture will increase 9.63% compared with the common refrigerant R22. Unit volumetric heating capacity and discharged pressure are higher than those of R22 system, but the compressor ratio and discharge temperature are lower. Efficiency of compressor has a significant effect on the COPh.
出处 《中原工学院学报》 CAS 2016年第3期59-63,共5页 Journal of Zhongyuan University of Technology
基金 国家自然科学基金项目(51176207) 郑州市领军人才计划项目(131PLJRC641)
关键词 热泵热水器 R744/R1270 传热窄点 绝热压缩效率 heat pump water heater R744/R1270 heat transfer pinch point isentropic efficiency
  • 相关文献

参考文献12

二级参考文献25

  • 1任挪颖,晏刚,宋飞.天然工质丙烯替代R22的性能分析[J].家电科技,2006(3):44-46. 被引量:9
  • 2宁静红,彭苗,李慧宇.R290家用空调的替代与应用研究[J].流体机械,2006,34(12):72-74. 被引量:8
  • 3Kim S G, Kim M S. Experimental and simulation on the performance of an autocascade refrigerating system using carbon dioxide as a refrigerant[J]. Int. J. Refrig., 2002, 25(8):1093-1101.
  • 4Niu Baolian, Zhang Yufeng, Experimental study of the refrigeration cycle performance for the R744/R290 mixtures[ J]. Int. J. Refrig. , 2007, 30( 1 ) : 37-42.
  • 5Koyama S, Jin D X, Xue J, et aL. Experimental Study on the Performance of a CO2/DME System [ C ]. The 22rid International Congress of Refrigeration, Beijing, China, 2007:986.
  • 6Kim J H, Cho J M , Kim M S. Cooling performance of several CO2/ propane mixtures and glide matching with secondary heat transfer fluid [J]. Int. J. Refrig., 2008, 31(5):800-806.
  • 7Lemmon E W, McLinden M O, Huber M L. REFPROP, NIST Reference Fluid Thermodynamic and Transport Properties, 2003, Ver. 7. 1, USA.
  • 8GB/T 23137-2008 家用和类似用途热泵热水器[S].
  • 9马一太,田华.小型制冷机的新技术及制冷剂替代进展[c].第九届全国空调器、电冰箱(柜)及压缩机学术交流会论文集.2008.
  • 10Zhou Guobing, Yufeng Zhang. Performance of a splittype air conditioner matched with coiled adiabatic capillary tubes using HCFC22 and HC290 [ J ]. Applied Energy, 2010, 87 (5) : 1522-1528.

共引文献41

同被引文献11

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部