期刊文献+

氯化锂除湿转轮传热传质模型 被引量:5

Heat and mass transfer model for LiCl rotary dehumidifiers
下载PDF
导出
摘要 建立了预测氯化锂除湿转轮工作性能的数学模型 ,利用该模型对在不同转速下转轮的除湿性能进行了分析。结果表明 ,对氯化锂除湿转轮而言 。 Develops a mathematic model to predict the dehumidification performance of LiCl rotary dehumidifiers. Analyses the dehumidification performance at different rotational speed by the model. The results show that the rotational speed has very little impact on the dehumidification performance.
机构地区 同济大学
出处 《暖通空调》 北大核心 2004年第11期135-138,共4页 Heating Ventilating & Air Conditioning
基金 上海市科学技术委员会资助项目 (编号 :0 2 3 0 12 0 0 5)
关键词 除湿转轮 传热传质 转速调节 控制策略 工作性能 lithium chloride, rotary dehumidifier, mass transfer, heat transfer, mathematic model, rotational speed
  • 相关文献

参考文献8

  • 1赵荣义,范存养,薛殿华,等.空气调节.第3版.北京:中国建筑工业出版社,1994
  • 2Barlow R S. An analysis of the adsorption process and of desiccant cooling systems: a pseudo-steady-state model for coupled heat and mass transfer. Solar Energy Research Institute Rept. SERI/TR 1330, Golden, Colo, 1982
  • 3Collier R K, Cal T S, Lavan Z. Advanced desiccant material assessment. Gas Research Institute Rept. GRI - 86/0181, Chicago, 1986
  • 4MacClaine-Cross I L, Banks P J. Coupled heat and mass transfer in regenerators- prediction using an analogy with heat transfer. Int J Heat Mass Transfer, 1972, 15:1225- 1242
  • 5Ruthven D M. Principles of adsorption and adsorptionprocess. John Wiley & Sons,1984
  • 6Zheng W, Worek W M. Numerical simulation of combined heat and mass transfer process in a rotary dehumidifier. Numeric Heat Transfer, 1993,23 (Part A):211 - 232
  • 7Gazinski B, Szczechowiak E. Die Thermodynamischen Grundlagen der Luftentfeuchtung mit Hilfe der Waissigen Lithiumbromid-und Lithiumchlorid-Losungen. Ki KlimaKalte-Heizung, 1984,1: 509 - 515
  • 8Gutermuth W. Untersuchung der gekoppelten Warmeund Stoffubertragung in Sorptionsregeneratoren: [ Dissertation]. Darmstadt: Technische Hochschule Darmstadt, 1980

同被引文献28

  • 1刘晓华,江亿,曲凯阳,陈晓阳.叉流除湿器中溶液与空气热质交换模型[J].暖通空调,2005,35(1):115-119. 被引量:27
  • 2贾春霞,吴静怡,代彦军.干燥剂转轮除湿性能实验研究[J].化学工程,2006,34(6):4-7. 被引量:11
  • 3方玉堂,丁静,杨晓西.铝改性硅胶吸附剂材料及其制备方法[J].无机硅化合物(天津),2007(1):42-47. 被引量:1
  • 4Zhang X J. A simulation study of heat and mass transfer in a honeycombed rotary desiccant dehumidifier [J]. Applied Thermal Engineering, 2003,23(8) : 989-1003.
  • 5Simonson C J, Besant R W. Energy wheel effectiveness: part Ⅱ--correlations[J]. Heat and Mass Transfer, 1999, 42 (12) : 2171-2185.
  • 6Mehmet Kanoglu, Melda Ozdinc. Energy and exergy analysis of an experimental open cycle desiccant cooling system [J]. Applied Thermal Engineering, 2004, 24 (5/6): 919-932.
  • 7Slayzak S J, Pesaran A A, Hhancock CE. Experimental evaluation of commercial desiccant dehumidifier wheels.Absorption Heat Pump Conference '96, Quebec,Canada, 1996 : 17-20.
  • 8Schultz K J. Rotary solid desiccant dehumidifiers:analysis of models and experimental investigation: [ PhD thesis]. Univ. of Wisconsin, 1987.
  • 9Slayzak S J, Pesaran A A, Hhancock C E. Experimental evaluation of commercial desiccant dehumidifier wheels [A]. In: Absorption Heat Pump Conference '96 [C], Quebec (Canada), 1996, 17-20.
  • 10Schultz K J. Rotary Solid Desiccant Dehumidifiers: Analysis of Models and Experimental Investigation [PhD thesis] [D]. Wisconsin:University of Wisconsin, 1987.

引证文献5

二级引证文献20

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