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天然气超声波旋流脱水装置的工作性能
引用本文:刘恒伟, ,刘中良, ,冯永训, ,顾克宇, ,颜廷敏.天然气超声波旋流脱水装置的工作性能[J].中国化学工程学报,2005,13(1):9-12.
作者姓名:刘恒伟     刘中良     冯永训     顾克宇     颜廷敏
作者单位:[1]TheEducationMinistryKeyLabofEnhancedHeatTransfer&EnergyConversation,CollegeofEnvironmentalandEnergyEngineering,BeijingUniversityofTechnology,Beijing100022,China [2]ShengliEngineering&ResearchInstitute,ShengliOilFieldLtd.,SINOPEC,Dongying257026,China
基金项目:高等学校博士学科点专项科研项目,the Open Project of the Key Laboratory of Beijing Municipality of China
摘    要:A new type of dehydration unit for natural gas was briefly described and its basic structure and working principles were presented. An indoor test rig for testing the unit performance was set up and the experimental results were given. The results showed that the unit could attain a maximum dew point depression of about 20~C without any need of external mechanical power and chemicals. The pressure loss ratio, shock wave and the flow rate had great influence on the dehydration characteristics. From the systematic analysis of the factors that affect the dehydration efficiency of the unit, the suggestions for improving the unit are put forward.

关 键 词:天然气  超声波涡流脱水技术  预处理工艺  湿度调节器
修稿时间: 

Characteristics of a Supersonic Swirling Dehydration System of Natural Gas
LIU Hengwei,LIU Zhongliang,FENG Yongxun,GU Keyu,YAN Tingmin.Characteristics of a Supersonic Swirling Dehydration System of Natural Gas[J].Chinese Journal of Chemical Engineering,2005,13(1):9-12.
Authors:LIU Hengwei  LIU Zhongliang  FENG Yongxun  GU Keyu  YAN Tingmin
Abstract:A new type of dehydration unit for natural gas was briefly described and its basic structure and working principles were presented. An indoor test rig for testing the unit performance was set up and the experimental results were given. The results showed that the unit could attain a maximum dew point depression of about 20℃ without any need of external mechanical power and chemicals. The pressure loss ratio, shock wave and the flow rate had great influence on the dehydration characteristics. From the systematic analysis of the factors that affect the dehydration efficiency of the unit, the suggestions for improving the unit are put forward.
Keywords:supersonic swirling separator  dehydration  natural gas
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