Numerical study of heat and mass transfer of ammonia-water in falling film evaporator

被引:0
|
作者
Xianbiao Bu
Weibin Ma
Yuanfeng Huang
机构
[1] Chinese Academy of Sciences,Guangzhou Institute of Energy Conversion
[2] Chinese Academy of Sciences,Key Laboratory of Renewable Energy and Gas Hydrate
来源
Heat and Mass Transfer | 2012年 / 48卷
关键词
Liquid Film; Tube Length; Entrance Region; Vapor Liquid Interface; Ammonia Vapor;
D O I
暂无
中图分类号
学科分类号
摘要
To investigate the performance of the heat and mass transfer of ammonia water during the process of falling film evaporation in vertical tube evaporator, a mathematical model of evaporation process was developed and solved based on stream function. Then an experimental study of falling film evaporation was carried out in order to validate the mathematical model. A series of parameters, such as velocity, film thickness and concentration, etc., were obtained from the mathematical model. The calculated results show that the average velocity and the film thickness change sharp at the entrance region when x < 100 mm, while they vary slightly in the fully developed region when x > 100 mm. The film thickness depends largely on the flow rate of solution. It is observed that the heating power and mass flow of solution significantly affect the concentration difference between the inlet and outlet of evaporation tube. The calculated results reveal that the tube length has a significant impact on the amounts of ammonia vapor evaporated. It is suggested that the roll-worked enhanced tube should be used in order to decrease the concentration gradient in the film thickness direction and enhance the heat and mass transfer rate. Furthermore, the experimental and calculated results indicate that the inlet solution concentration has a great influence on the heat exchange capacity, the amounts of ammonia vapor evaporated and the evaporation pressure.
引用
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页码:725 / 734
页数:9
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