材料科学
机械
电晕放电
电场
电极
粒子(生态学)
相对湿度
带电粒子
日冕(行星地质学)
静电学
平衡方程
物理
离子
热力学
海洋学
马尔可夫链
机器学习
地质学
马尔可夫模型
天体生物学
量子力学
计算机科学
维纳斯
作者
M. Younes,Amar Tilmatine,Karim Medles,Abdelber Bendaoud,Adrian Samuilă,Lucian Dăscălescu
标识
DOI:10.1109/tdei.2009.5128498
摘要
The trajectories of the insulating particles in roll-type corona-electrostatic separators depend on the configuration of the electrode system, the applied high voltage, the roll speed, the size of the particles and the relative humidity of the ambient air. The aim of this work was to point out how numerical modeling can be of use in the study of the effects of these factors. Particle charging is modeled using the Pauthenier's equation for spheres in uniform electric field. The equation of particle discharging was obtained after an experimental study of the surface potential decay of a granular layer of insulating material in contact with an electrode. The trajectories are computed based on the balance equation of the electrical and mechanical forces that act on such charged particles. The numerical results are in good agreement with the experimental findings.
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