典型文献
The influence of charge characteristics of suspension droplets on the ion flow field in different temperatures and humidity
文献摘要:
In order to clarify the charging characteristics of suspension droplets in ion flow field under different temperatures and humidity,the effective charging factor used to characterize the charging characteristics of suspension droplets is introduced in this paper,and a calculation method of charging factor is proposed based on the upstream finite element method(FEM).Then,the charging factor under different temperatures and humidity is calculated,and the analytic expression of the charging factor considering the influence of temperature and humidity is obtained by fitting the calculation results.The influence of suspension droplets on the ion flow field is analyzed.The results show that the charging factor is small and increases little with the relative humidity when the relative humidity is less than 60%,and the charging factor is large and increases rapidly with the relative humidity when the relative humidity is more than 60%.At the same relative humidity,the charging factor increases linearly with the temperature.The influence of charged suspension droplets on the ion flow field can be ignored when the relative humidity is less than 60%and must be considered under high temperature and humidity.The calculation method and analytic expression of the charging factor proposed in this paper can be used to model of ion flow field considering the influence of temperature and humidity and provide technical support for the construction of HVDC transmission lines across high temperature and humidity.
文献关键词:
中图分类号:
作者姓名:
Nanxuan SHEN;Zihan SU;Yuanhang ZHANG;Tiebing LU
作者机构:
State Key Laboratory for Alternate Electrical Power System with Renewable Energy Sources,North China Electric Power University,Beijing 102206,People's Republic of China
文献出处:
引用格式:
[1]Nanxuan SHEN;Zihan SU;Yuanhang ZHANG;Tiebing LU-.The influence of charge characteristics of suspension droplets on the ion flow field in different temperatures and humidity)[J].等离子体科学和技术(英文版),2022(04):29-36
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0.323114
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