首页> 外文会议>Industry Applications Society Annual Meeting, 1988., Conference Record of the 1988 IEEE >Bipolar charging of particles in the 1 to 10 mu m diameter size range
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Bipolar charging of particles in the 1 to 10 mu m diameter size range

机译:直径大小范围为1至10微米的粒子的双极带电

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Bipolar charging experiments were performed for particles in the 1 to 10 mu m diameter size range, and the data were used to evaluate continuum regime models for predicting charge acquisition. Particles were exposed to countercurrents of positive and negative ions in the presence of an external electric field. Particle charge was determined from observations of particle trajectories in a uniform electric field. Data were obtained for dimensionless electric fields from 1 to 13, and ion conductivity ratios of 3, 10, and infinity . The data were compared to predictions of field-diffusion theory, classical field theory, classical diffusion theory, and an empiricism formed by adding the field and diffusion approximations. Field-diffusion theory and the field plus diffusion empiricism were in excellent agreement with the measurements. Field theory was in good agreement for dimensionless fields greater than 10, and diffusion theory significantly underestimated charge for the range of dimensionless fields that were studied.
机译:对直径范围为1至10微米的颗粒进行了双极充电实验,并使用该数据评估了用于预测电荷获取的连续体模型。在存在外部电场的情况下,粒子暴露于正离子和负离子的逆流中。根据在均匀电场中对粒子轨迹的观察来确定粒子电荷。获得了从1到13的无量纲电场以及3、10和无穷大的离子电导率的数据。将数据与场扩散理论,经典场论,经典扩散理论以及通过将场和扩散近似相加形成的经验主义的预测进行比较。场扩散理论和场加扩散经验与测量结果非常吻合。场论与大于10的无量纲场非常吻合,扩散理论大大低估了所研究的无量纲场的电荷。

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