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低GWP不饱和氟化烯烃替代HFC的前景预测 被引量:7

Foreground forecast of substituting HFCs with low GWP unsaturated fluorinated olefins
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摘要 美国JS Brown博士等人对于大量候选的替代制冷剂,提出了在仅知其标准沸点温度和分子结构式的条件下,预测估算其热力学特性与性能的简捷方法,论证了这种方法的误差与有效性,并分析了8种氟化丙烯同分异构体的热力学特性及R1234yf与R1234ze(Z)的具体应用。根据已收集到的资料总结了近年来这些研究成果,供国内同行了解与参考。 American Dr J S Brown,et al present a new method to easily and quickly predict the thermodynamic characteristic and performance of an alternative refrigerant with only its normal boiling point temperature and molecular structure known,demonstrate the error and effectiveness of this method,and analyse thermodynamic characteristics of eight fluorinated propylene isomers and specific applications of R1234yf and R1234ze(Z).Provides a summarization of the related research achievements for domestic colleagues to understand and use for reference.
作者 汪训昌
出处 《暖通空调》 北大核心 2010年第5期47-56,共10页 Heating Ventilating & Air Conditioning
关键词 不饱和氟化烯烃 不饱和氟化丙烯 CFC HCFC HFC HFO 标准沸点温度 unsaturated fluorinated olefin unsaturated fluorinated propylene CFC HCFC HFC HFO normal boiling point temperature
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  • 1Regulation (EC) No 842/2006 of the European Parliament and of the Council of 17 May 2006 on certain fluorinated greenhouse gases[J/OL].Official Journal of the European Union,2006.http:// tinyurl.com/mh5721.
  • 2Directive 2006/40/EC of the European Parliament and of the Council of 17 May 2006 relating to emissions from air-conditioning systems in motor vehicles and amending Council Directive 70/156/EC[J/OL].Official Journal of the European Union,2006.http://tinyurL com/lxw8nm.
  • 3Spatz M,Minor B.HFO-1234yf low GWP refrigerant update[C/OL]// Proceedings of the International Refrigeration and Air Conditioning Conference,2008.http://tinyurL com/ktsda6.
  • 4Brown J S.HFOs-new,low global warming potential refrigerants[J].ASHRAE J,2009,51(8):22-29.
  • 5Brown J S.Predicting performance of new refrigerants using the Peng-Robinson Equation of State[J].Int J Refrigeration,2007,30 (8):1319-1328.
  • 6Brown J S.A methodology to evaluate R114 replacement refrigerants using thermodynamic properties[J].HVAC &.R Research,2007,13 (5):697-709.
  • 7Brown J S.Evaluation of potential R-22 substitute refrigerants using fundamental thermodynamic parameters[C]// Proceedings of the 22nd International Congress of Refrigeration.Beijing,China,2007.
  • 8Brown J S.Methodology for estimating thermodynamic parameters and performance of alternative refrigerants[G]// ASHRAE Trans,2008,114 (1):230-238.
  • 9Brown J S,Zilio C,Cavallini A,Estimations of the thermodynamic and transport properties of R-1234yf using a cubic equation of state and group contribution methods[C]// Proceedings of the 3rd IIR Conference on Thermophysical Properties and Transfer Processes of Refrigerants.Boulder,CO,USA,2009.
  • 10Zilio C,Brown J S,Cavallini A Simulation of R-1234yf performance in a typical automotive system[C]// Proceedings of the 3rd IIR Conference on Thermophysical Properties and Transfer Processes of Refrigerants.Boulder,CO,USA,2009.

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