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LiCl溶液真空蒸发过程的实验研究
引用本文:韩晓婉, 邹同华, 陈剑波, 侯小兵, 常亚飞. LiCl溶液真空蒸发过程的实验研究[J]. 真空科学与技术学报, 2019, 39(9): 775-780. DOI: 10.13922/j.cnki.cjovst.2019.09.05
作者姓名:韩晓婉  邹同华  陈剑波  侯小兵  常亚飞
作者单位:1.天津商业大学 天津市制冷技术重点实验室 天津 300134
基金项目:天津市自然科学基金重点项目(No.16JCZDJC31500); 天津市教委科研计划重点项目(No.2017ZD09)
摘    要:对LiCl溶液在真空状态下的蒸发过程进行研究,为温湿度独立控制空调系统的应用奠定理论基础和技术支持,对保证空气品质、节能减排等的发展都具有重要意义。具体的研究是以单位时间内单位体积LiCl溶液的平均水分蒸发量为评价指标,从当量厚度和传热温差两个方面,对不同真空度条件下,分别使用球形蒸发瓶和锥形蒸发瓶进行实验。结果表明:蒸发瓶的结构对溶液再生过程有一定的影响,且当量厚度和再生压力对LiCl溶液的真空蒸发再生过程的影响趋势不是单调的。

关 键 词:真空再生  当量厚度  传热温差  蒸发瓶结构
收稿时间:2019-03-20

Experimental Study on Evaporation of LiCl Solution in Low Vacuum
Han Xiaowan, Zou Tonghua, Chen Jianbo, Hou Xiaobing, Chang Yafei. Experimental Study on Evaporation of LiCl Solution in Low Vacuum[J]. CHINESE JOURNAL VACUUM SCIENCE AND TECHNOLOGY, 2019, 39(9): 775-780. DOI: 10.13922/j.cnki.cjovst.2019.09.05
Authors:Han Xiaowan  Zou Tonghua  Chen Jianbo  Hou Xiaobing  Chang Yafei
Affiliation:1.Tianjin University of Commerce, Tianjin Key Laboratory of Refrigeration Technology, Tianjin 300134, China
Abstract:Herein,we addressed the vacuum evaporation of LiCl solution in air-conditioner with independent controller of temperature and humidity.The influence of the temperature difference in heat transfer,flask-shape,pressure and self-defined Equivalent Thickness(ET) on the evaporation of LiCl solution was investigated.The results show that the flask-shape,pressure and temperature difference all had a major impact.For example,a lower pressure evaporated more LiCl solution; for a spherical flask,as ET increased,the evaporation of LiCl solution decreased(~3 kPa) and changed in an increase-decrease mode(6~10 kPa),but for a conical flask,the evaporation decreased(<10 kPa) and changed in increase-decrease manner(>14 kPa).As the temperature difference increased,the evaporation of LiCl solution increased in spherical and conical flasks; however,cross-overs of evaporation curves(below 8 kPa) occurred for a spherical flask only.When it comes to vacuum evaporation,conical flask may outperform spherical flask.
Keywords:Vacuum regeneration  Equivalent thickness  Heat transfer temperature difference  The structure of evaporation bottle
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