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撞击流浓缩器蒸发能力的实验研究
引用本文:刘兴勇,张利,梁宏,林海波.撞击流浓缩器蒸发能力的实验研究[J].四川理工学院学报(自然科学版),2004,17(2):27-30.
作者姓名:刘兴勇  张利  梁宏  林海波
作者单位:1. 四川理工学院材料化学系
2. 四川理工学院生物工程系
3. 四川理工学院机电工程系,四川,自贡,643000
摘    要:采用蔗糖水溶液作为试验溶液,通过改变空气进口温度、液气质量流量之比、液滴加速管的长度等对撞击流浓缩器(ISC)的蒸发能力进行了研究。研究结果表明ISC的蒸发能力随空气进口温度的升高、液气比的减小而提高;在ISC中宜使用较短的加速管。

关 键 词:撞击流  浓缩  撞击流浓缩器  蒸发能力
文章编号:1008-438X(2004)02-0027-04
修稿时间:2003年11月12

Experimental Study on the Evaporative Capacity of Coaxial Two Impinging-stream Concentrator
LIU Xing-yong,ZHANG Li,LIANG Hong,LIN Hai-bo.Experimental Study on the Evaporative Capacity of Coaxial Two Impinging-stream Concentrator[J].Journal of Sichuan University of Science & Engineering:Natural Science Editton,2004,17(2):27-30.
Authors:LIU Xing-yong  ZHANG Li  LIANG Hong  LIN Hai-bo
Institution:LIU Xing-yong1,ZHANG Li1,LIANG Hong2,LIN Hai-bo3
Abstract:Sugar cane solution is used as a trial solution in experiment. An evaporative capacity of impinging-stream concentrator is studied by changing inlet air temperature, and the ratio of inlet sugar solution flow rate to inlet gas flow rate and the length of accelerating pipe. Experimental results show that firstly, the evaporative capacity of impinging stream concentrator increases with increased inlet air temperature, decreased with the ratio of inlet sugar solution flow rate to inlet gas flow rate; secondly, it is better to apply a short accelerating pipe to the concentrator.
Keywords:impinging stream  concentration  impinging stream  concentrator  evaporative capacity
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