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Simulation of sub-micron particle formation and growth during combustion processes
作者姓名:WEI Feng  ZHANG Junying  ZHENG Chuguang
作者单位:National Key Laboratory of Coal Combustion, Huazhong University of Science and Technology, Wuhan 430074, China,National Key Laboratory of Coal Combustion, Huazhong University of Science and Technology, Wuhan 430074, China,National Key Laboratory of Coal Combustion, Huazhong University of Science and Technology, Wuhan 430074, China
基金项目:国家自然科学基金,国家重点基础研究发展计划(973计划)
摘    要:Sub-micron particle formation and growth during combustion processes is very complex because of its strong uncertainty and randomness. A model to simulate the sub-micron particle formation and growth during the combustion process is developed based on the gas kinetic theory and is expressed by the vapor concentration changes and particle loading changes, which reflects effect characteristics of different mechanism (nucleation, condensation and coagulation) in particle formation processes. The developed characteristic time is used to token the three mechanisms. It is thought that environmental temperature and pressure, vapor temperature and critical pressure are important factors influencing the sub-micron particle formation and growth. The sub-micron particle formation processes under different conditions are studied and the effect characteristics of these mechanisms are analyzed, which show that the nucleation, condensation,and coagulation occur simultaneously during the sub-micron particle formation and growth process. Nucleation contributes to the sub-micron particle formation, while condensation and coagulation is helpful to the growth of the particle size.

关 键 词:sub-micron  particle    formation  and  growth    nucleation    condensation    coagulation    combustion

Simulation of sub-micron particle formation and growth during combustion processes
WEI Feng,ZHANG Junying,ZHENG Chuguang.Simulation of sub-micron particle formation and growth during combustion processes[J].Progress in Natural Science,2005,15(4):358-362.
Authors:WEI Feng  Zhang Junying  Zheng Chuguang
Institution:National Key Laboratory of Coal Combustion, Huazhong University of Science and Technology, Wuhan 430074, China
Abstract:Sub-micron particle formation and growth during combustion processes is very complex because of its strong uncertainty and randomness. A model to simulate the sub-micron particle formation and growth during the combustion process is developed based on the gas kinetic theory and is expressed by the vapor concentration changes and particle loading changes, which reflects effect characteristics of different mechanism (nucleation, condensation and coagulation) in particle formation processes. The developed characteristic time is used to token the three mechanisms. It is thought that environmental temperature and pressure, vapor temperature and critical pressure are important factors influencing the sub-micron particle formation and growth. The sub-micron particle formation processes under different conditions are studied and the effect characteristics of these mechanisms are analyzed, which show that the nucleation, condensation,and coagulation occur simultaneously during the sub-micron particle formation and growth process. Nucleation contributes to the sub-micron particle formation, while condensation and coagulation is helpful to the growth of the particle size.
Keywords:sub-micron particle  formation and growth  nucleation  condensation  coagulation  combustion
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