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首页> 外文期刊>Journal of Electrostatics >Electrostatic characterisation of corona-wire aerosol chargers
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Electrostatic characterisation of corona-wire aerosol chargers

机译:电晕丝气溶胶充电器的静电特性

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摘要

This paper investigates the electrostatic properties of aerosol corona-wire diffusion chargers. The most important parameters that determine charging levels of particles at the outlet of such devices are the ion concentration, N-i, and the mean residence time of the aerosol in the charging zone, t. A method to determine the exact N(i)t product is presented and used for the characterization of a Hewitt-type corona charger. It is shown that ignoring the space charge effect leads to significant errors when the ion concentration is greater than 5 x 10(13) ions/m(3). A numerical model developed to describe the performance of the device in more detail is used to predict the behavior of the charger when some geometric characteristics are changed. Estimations of ion penetration levels through the inner electrode based on the numerical model show better agreement with the experimental results at sub-atmospheric pressures. Finally, calculations of the average Nit product appear to increase with pressure despite the fact that the ionic concentration is significantly lower. (C) 2004 Elsevier B.V. All rights reserved.
机译:本文研究了气溶胶电晕丝扩散充电器的静电性能。决定此类设备出口处颗粒充电水平的最重要参数是离子浓度N-i和气溶胶在充电区域的平均停留时间t。介绍了一种确定确切N(i)t乘积的方法,并将其用于休伊特型电晕充电器的表征。结果表明,当离子浓度大于5 x 10(13)离子/ m(3)时,忽略空间电荷效应会导致明显的误差。当某些几何特性发生变化时,将使用开发的数值模型来更详细地描述设备的性能,以预测充电器的行为。在数值模型的基础上估算通过内部电极的离子渗透水平,表明与低于大气压的实验结果更好地吻合。最后,尽管离子浓度显着降低,但平均Nit产物的计算似乎随压力增加。 (C)2004 Elsevier B.V.保留所有权利。

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