期刊文献+

溴化锂溶液降膜吸收过程实验研究 被引量:3

Experiment study on LiBr falling film absorption process
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摘要 :对溴化锂溶液竖板降膜吸收器进行了传热传质实验研究,实验内容包括不同吸收压力、不同溶液流量、不同溶液进口温度及不同冷却条件对吸收过程传热传质的影响,这种响应关系反映了吸收器与这些关键因变因素之间的应变规律, Heat and mass transfer between LiBr falling film along vertical board and steam in the absorber has been studied in the paper. The influences of absorbing pressure, solution mass flowrate, solution inlet temperature and cooling condition to the heat and mass transfer process and the absorber efficiency related to these factors are discussed.
出处 《上海理工大学学报》 EI CAS 2000年第1期21-24,共4页 Journal of University of Shanghai For Science and Technology
关键词 溴化锂溶液 降膜吸收 传热 传质 制冷 LiBr solution falling film absorption heat and mass transfer
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参考文献4

  • 12.Matsuda,Choi K H,Hada K et al.Effect of pressure and concentration on performance of a vertical falling-film type of absorber and generator using lithium bromide aqueous solutions[J] . Int J Refrig, 1994,17(8):538~542
  • 23.Wang C Q , Lu Z, Li L Q et al.Heat and mass transfer in falling film generator of lithium bromide absorption refrigerating machine[A]. 19th international congress of refrigeration 1995 Proceedings[C]. Hangzhou, 1997
  • 34.Cho H C, Kim C B, Karng S W et al.Heat transfer characteristics in a vertical tube absorber using LiBr family solution[A].19th International Congress of Refrigeration 1995 Proceedings[C]. Hangzhou, 1997
  • 41998-12-14

同被引文献26

  • 1崔晓钰,李美玲.板式膜反转降膜吸收器的设计研究[J].流体机械,2005,33(5):58-62. 被引量:7
  • 2耿惠彬.溴化锂吸收式制冷机传热强化技术[J].机电设备,1994(5):3-23. 被引量:3
  • 3崔晓钰,李美玲.膜反转板式降膜吸收过程的理论研究[J].化工学报,2006,57(5):1089-1094. 被引量:3
  • 4谭天恩 麦本熙 等.化工原理(下册)[M].北京:化学工业出版社,1990.13.
  • 5Andreas Genssle, Karl Stephan. Analysis of the process performance of an absorption heat transformer with compact heat exchangers and the mixture TFE-E181. International Journal of Thermal Science, 2000 (39): 30-38
  • 6Tong Taekang, Atsashi Akisawa, Takao Kashiwagi. Experimental correlation of combined beat and mass transfer for NH3-H2O falling film absorption. International Journal of Refrigeration, 1999 (22) :250-262
  • 7Setterwall F, Glebov D, Wilkensten B. Low temperature driven absorption chiller//The 2nd International Heat Powered Cycles Conference. Paris, 2001:349 353
  • 8Flamensbeck M, Summerer F, Riesch P, Ziegler G. A cost effective absorption chiller with plate heat exchangers using water and hydroxides. Applied Thermal Engineering, 1998, 18 (6): 413-425
  • 9Sbitara A, Nisbiyama N. Study on transfer of plate-fin type generator for absorption machines//Proceedings of the 19th International Congress of Refrigeration. Netherlands, 1995
  • 10Reay D A. Compact heat exchangers, enhancement and heat pumps. International Journal of Refrigeration, 2002, 25:460-470

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