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Preliminary study on interaction of water mist with diffusion flame of liquid fuels
作者姓名:LIU Jianghong  LIAO Guangxuan  LI Peide and YAO Bin
作者单位:State Key Laboratory of Fire Safety Science,University of Science and Technology of China,Hefei 230026,China
基金项目:Supported by the Major State Basic Research Development Program of China (2001CB409609)
摘    要:The chemical and physical interaction mechanisms of the water mist with diffusion flame of liquid fuels are investigated.The difference of the thermograms and the thermal field isograms between ethanol flame and kerosene flame with the water mist applica-tion is explained. With the water mist application, the differences between ethanol and kerosene in heat release rate, O_2 and CO concentra-tions of their combustion products, and the temperature of their srnoke are analyzed. At the same time, the interaction mechanism of thewater mist with diffusion flame is presented and their relationship to the fuel species and to the concentration of water mist is described.


Preliminary study on interaction of water mist with diffusion flame of liquid fuels
LIU Jianghong,LIAO Guangxuan,LI Peide and YAO Bin.Preliminary study on interaction of water mist with diffusion flame of liquid fuels[J].Progress in Natural Science,2003,13(3).
Authors:Liu Jianghong  LIAO Guangxuan  Li Peide  YAO Bin
Abstract:The chemical and physical interaction mechanisms of the water mist with diffusion flame of liquid fuels are investigated. The difference of the thermograms and the thermal field isograms between ethanol flame and kerosene flame with the water mist applica-tion is explained. With the water mist application, the differences between ethanol and kerosene in heat release rate, O2 and CO concentra-tions of their combustion products, and the temperature of their smoke are analyzed. At the same time, the interaction mechanism of the water mist with diffusion flame is presented and their relationship to the fuel species and to the concentration of water mist is described.
Keywords:water mist  diffusion flame  interaction mechanism  
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