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首页> 外文期刊>The International Journal of Environmental Studies >Numerical study on PM10 collection efficiency in a wire-cylinder electrostatic precipitator under multi-field coupling
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Numerical study on PM10 collection efficiency in a wire-cylinder electrostatic precipitator under multi-field coupling

机译:多场耦合条件下线筒式电除尘器中PM10收集效率的数值研究

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摘要

The PM10 collection efficiency of a wire-cylinder electrostatic precipitator (ESP) was studied by means of a developed mathematical model, including the multi-field coupling between the gas flow field, the particle dynamic field and the electric field, and applying the Deutsch-Anderson Equation. The diffusion charging mechanism was considered due to the diameter range of PM10. The investigated variables were the applied potential, the gas velocity and the particle distribution. Numerical results indicate that the diffusion charging has significant influence on PM10 removal performance and the effect is more obvious with the decreasing diameter, and that the PM10 collection efficiency increases with the increasing applied potential and the increment of collection efficiency is more significant at lower voltage. Moreover, as the gas velocity at inlet decreases, collection efficiency of PM10 will increase. Finally, the overall efficiency increases with increasing the mean diameter of particle distribution. The research results can provide theoretical and technical references for the design of novel ESP aiming at economy and environment protection.
机译:通过开发的数学模型研究了线筒式静电除尘器(ESP)的PM10收集效率,包括气体流场,粒子动态场和电场之间的多场耦合,并应用了Deutsch-安德森方程式。由于PM10的直径范围,所以考虑了扩散带电机理。研究的变量是施加电势,气体速度和颗粒分布。数值结果表明,扩散带电对PM10的去除性能有显着影响,且随着直径的减小,效果更加明显;在较低的电压下,PM10的捕集效率随施加电势的增加而增加,而捕集效率的提高则更为明显。此外,随着入口处气体速度的降低,PM10的收集效率将提高。最后,总效率随着颗粒分布平均直径的增加而增加。研究结果可为新型以经济和环保为目的的ESP的设计提供理论和技术参考。

著录项

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  • 作者单位

    College of Energy and Mechanical Engineering, Shanghai University of Electric Power, Shanghai 200090, China,Shanghai Engineering Research Centre of Power Generation Environmental Protection, Shanghai 200090, China;

    College of Energy and Mechanical Engineering, Shanghai University of Electric Power, Shanghai 200090, China;

    School of Computing, Engineering and Mathematics, University of Western Sydney, Sydney 2751, Australia;

    College of Energy and Mechanical Engineering, Shanghai University of Electric Power, Shanghai 200090, China,Shanghai Engineering Research Centre of Power Generation Environmental Protection, Shanghai 200090, China;

    College of Energy and Mechanical Engineering, Shanghai University of Electric Power, Shanghai 200090, China,Shanghai Engineering Research Centre of Power Generation Environmental Protection, Shanghai 200090, China;

    College of Energy and Mechanical Engineering, Shanghai University of Electric Power, Shanghai 200090, China,Shanghai Engineering Research Centre of Power Generation Environmental Protection, Shanghai 200090, China;

  • 收录信息 美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Wire cylinder; Collection efficiency; PM10; Applied potential; Gas velocity; Air pollution;

    机译:钢丝缸;收集效率;PM10;应用潜力;气体速度空气污染;

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