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采用增大凝结液滴方法的锥芯超音速旋流分离装置性能研究(英文)

Performance of Inner-core Supersonic Gas Separation Device with Droplet Enlargement Method

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【作者】 马庆芬胡大鹏贺高红胡施俊刘文伟徐巧莲王予新

【Author】 MA Qingfen 1,2,HU Dapeng1,HE Gaohong3,HU Shijun 1,LIU Wenwei4,XU Qiaolian1and WANG Yuxin 5 1Department of Chemical Machinery,Dalian University of Technology,Dalian 116012,China 2Department of Mechanical Engineering,Hainan University,Haikou 570228,China 3Department of Chemical Engineering,Dalian University of Technology,Dalian 116012,China 4China Liaohe Petroleum Engineering Co.,Ltd.(LPE),Panjin 124010,China 5 China Beijing Dwell Petroleum&Gas Technology Development Company Ltd.,Beijing 100085,China

【机构】 Department of Chemical Machinery,Dalian University of TechnologyDepartment of Mechanical Engineering,Hainan UniversityDepartment of Chemical Engineering,Dalian University of TechnologyChina Liaohe Petroleum Engineering Co.,Ltd.(LPE)China Beijing Dwell Petroleum&Gas Technology Development Company Ltd.

【摘要】 To improve the separation performance of a supersonic gas separation device for the treatment of gas mixture with a single heavy component,a novel structure with shorter settlement distance was constructed and a method of droplet enlargement was applied.A series of experiments were carried out in the improved separation device under various conditions,using air-ethanol vapor as the medium and micro water droplets as nucleation centers.The effects of the inlet pressure,temperature and relative humidity,the swirling intensity,and mass flow rate of water on the separation performance were investigated.The separation was improved by increasing the inlet pres-sure and relative humidity.With the decrease of swirling intensity and mass flow rate of water,the separation efficiency increased first and then decreased.The inlet temperature had a slight effect on the separation.The results showed that the separation performance was effectively improved using the proposed structure and method,and the best separation in this study was obtained with the ethanol removal rate about 55% and dew point depression 27 K.The addition of water had little pollution to the air-ethanol vapor system since the water carry-over rate was within the range of-2%-0 in most cases.

【Abstract】 To improve the separation performance of a supersonic gas separation device for the treatment of gas mixture with a single heavy component,a novel structure with shorter settlement distance was constructed and a method of droplet enlargement was applied.A series of experiments were carried out in the improved separation device under various conditions,using air-ethanol vapor as the medium and micro water droplets as nucleation centers.The effects of the inlet pressure,temperature and relative humidity,the swirling intensity,and mass flow rate of water on the separation performance were investigated.The separation was improved by increasing the inlet pres-sure and relative humidity.With the decrease of swirling intensity and mass flow rate of water,the separation efficiency increased first and then decreased.The inlet temperature had a slight effect on the separation.The results showed that the separation performance was effectively improved using the proposed structure and method,and the best separation in this study was obtained with the ethanol removal rate about 55% and dew point depression 27 K.The addition of water had little pollution to the air-ethanol vapor system since the water carry-over rate was within the range of-2%-0 in most cases.

【基金】 Supported by the Natural Science Foundation of Liaoning Province,China (20052193);Ph.D. Programs Foundation of Ministry of Education of China (20070141045)
  • 【文献出处】 Chinese Journal of Chemical Engineering ,中国化学工程学报(英文版) , 编辑部邮箱 ,2009年06期
  • 【分类号】TQ051.8
  • 【被引频次】18
  • 【下载频次】200
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