期刊文献+

溶液除湿中基于水蒸气压差的传质系数 被引量:6

Mass transfer coefficient for liquid dehumidification based on vapor pressure difference
下载PDF
导出
摘要 分析了溶液除湿系统中气液界面间传质过程的影响因素,以气液界面间传质的直接驱动力——溶液表面蒸气压与湿空气中水蒸气分压差为基础,提出了以蒸气压差为变量的传质系数关联式,采用已公开发表的实验数据(Li Cl溶液,纤维规整型填料)拟合获取关联式中常数项,得到除湿过程传质系数关联式。采用不同结构填料(Li Cl溶液,PVC规整型填料)已公开发表的实验数据对该关联式进行验证,实验值与计算值相对偏差为-10.48%~5.28%。为进一步验证该关联式,搭建了热泵型溶液除湿系统(Li Br溶液,翅片管式热湿交换器),用获得的实验数据对得到的关联式进行验证,相对偏差为-1.8%~12.8%。3组实验值与计算值的对比表明,以蒸气压差为主要变量的传质系数关联式对规整型填料溶液除湿器传质系数的模拟计算具有较高的计算精度。 The influencing factors for mass transfer of gas-liquid interface in liquid desiccant system are analyzed. A mass transfer correlation is given in dimensionless form based on the driving force of mass transfer, which is the vapor pressure difference through gas-liquid interface. The constants in the correlation are fitted based on published experimental data of Li Cl-H2O-air system in a column packed with cross corrugated cellulose. Another group of published experimental data of Li Cl-H2O-air system in a column packed with polyvinyl chloride is used for validating the correlation, with the relative deviation between experimental and calculated results from-10.48% to 5.28%. Moreover, a liquid dehumidification system driven by heat pump is set up, with Li Br-H2O as desiccant and finned tube heat exchanger as packings, and the experimental data are used for validating the correlation. The result shows that the deviation is-1.8%—12.8%. All these results show that the correlation has a high accuracy for mass transfer coefficient prediction in liquid dehumidifier with structured packings.
出处 《化工学报》 EI CAS CSCD 北大核心 2015年第12期4774-4779,共6页 CIESC Journal
基金 国家自然科学基金项目(51478386) '十二五'国家科技支撑计划项目(2011BAJ03B06-1)~~
关键词 传质 传质系数关联式 溶液除湿 实验验证 蒸气压差 mass transfer mass transfer correlation liquid desiccant experimental validation vapor pressure difference
  • 相关文献

参考文献20

  • 1Grossman G, Health M T. Simultaneous heat and mass transfer in absorption of gases in turbulent liquid films [J]. International Journal of Heat and Mass Transfer, 1984, 27(12): 2365-2376.
  • 2Ali A, Vafai K, Khaled A. Analysis of heat and mass transfer between air and falling film in a cross flow configuration [J]. Heat and Mass Transfer, 2004, 47(4): 743-755.
  • 3Martin V, Goswami D Y. Effectiveness of heat and mass transfer processes in a packed bed liquid desiccant dehumidifier/regenerator [J]. HVAC&R Research, 2000, 6(1): 21-39.
  • 4Gandhidasan P. A simplified model for air dehumidification with liquid desiccant [J]. Solar Energy, 2004, 76(4): 409-416.
  • 5Liu X H, Qu K Y, Jiang Y. Empirical correlations to predict the performance of the dehumidifier using liquid desiccant in heat and mass transfer [J]. Renewable Energy, 2006, 31(10): 1627-1639.
  • 6Geankoplis C J. Transport Processes and Separation Process Principles (Includes Unit Operations) (part 2)[M]. Qi Mingzhai,trans. Shanghai: East China University of Science and Technology Press, 2007, 540-555.
  • 7Onda K, Takeuchi H, OkumotoY. Mass transfer coefficients between gas and liquid phases in packed columns [J]. Journal Of Chemical Engineering of Japan, 1968, l(1): 56-62.
  • 8Chung T W, Ghosh T K, Hines A L. Comparison between random and structured packings for dehumidification of air by lithium chloride solutions in a packed column and their heat and mass transfer correlations [J]. Industrial & Engineering Chemistry Research, 1996, 35 (1): 192-198.
  • 9Gandhidasan P, Kettleborough C F, Ullah M R. Calculation of the heat and mass-transfer coefficient in a packed tower operating with a desiccant-air contact system [J]. Journal of Solar Energy Engineering-Transactions of the Asme, 1986, 108 (2): 123-128.
  • 10Chung T W, Ghosh T K, Hines A L. Mass and heat transfer coefficient for water absorption by lithium chloride: International Symposium on Distillation and Absorption[R]. Birmingham: IChemE, 1992.

二级参考文献14

  • 1殷勇高,张小松,赖融冰.两种盐溶液除湿器的建模与对比[J].化工学报,2006,57(12):2828-2833. 被引量:9
  • 2Yin Yonggao, Zhang Xiaosong, Chen Zhenqian. Experimental study on dehumidifier and regenerator of liquid desiccant cooling air conditioning system. Building and Environment, 2007, 42 (7): 2505-2511.
  • 3Liu X H, Zhang Y, Qu K Y, etc. Experimental study on mass transfer performances of cross flow dehumidifier using liquid desiccant. Energy Conversion and Management, 2006, 47 (15/16): 2682-2692.
  • 4Gandhidasan P, Rifat Ullah U, Kettleborough C F. Analysis of heat and mass transfer between a desiccant-air system in a packed tower. ASME Journal of Solar Energy Engineering, 1987, 109 (5): 89-93.
  • 5Grossman G. Simultaneous heat and mass transfer in film absorption under laminar flow. Int. J. Heat Mass Transfer, 1983, 26 (3): 357-371.
  • 6Gommed K, Grossman G, Ziegler F. Experimental investigation of a LiCl-water absorption system for cooling and dehumidification. Transactions of ASME, 2004, 126 (2): 710-715.
  • 7Ali A, Vafai K. An investigation of heat and mass transfer between air and desiccant film in an inclined parallel and counter flow channels. Int. J. Heat Mass Transfer, 2004 (47): 1745-1760.
  • 8Al-Farayedhi A A, Gandhidasan P, Al-Mutairi M A. Evaluation of heat and mass transfer coefficients in a gauzetype structured packing air dehumidifier operating with liquid desiccant. Int. J. Refrig., 2002, 25 (3):330-339.
  • 9Chung T W, Ghosh T K, Hines A L. Comparison between random and structured packings for dehumidification of air by lithium chloride solution in a packed column and their heat and mass transfer correlations. Ind. Eng. Chem. Res., 1996, 35 (11): 192-198.
  • 10Adnan A Kinsara, Omar M Al-Rabghi, Moustafa M Elsayed. Parametric study of an energy efficient air conditioning system using liquid desiccant. Applied Thermal Engineering, 1997, 18 (5): 327-335.

共引文献8

同被引文献41

引证文献6

二级引证文献15

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