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Air-Assisted Passive Ionizer for a Charged Pipe

机译:充气管道用空气辅助被动式电离器

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An air-assisted passive ionizer was developed for the elimination of static charges on charged particles accumulated in pipes, hoppers or silos. The ionizer is a grounded electrode with a sharp tip at which corona discharge take place due to the electric field produced by the charged particles. A charged plastic pipe was used to test the performance of the passive ionizer. The ionizer was placed in the center of the charged pipe to effectively meet the corona inception conditions. Fast air flow was supplied to the tip of the ionizer to increase the efficiency of static elimination. The surface potential distribution of the charged pipe before and after static elimination was measured both with and without the air assist. The results indicate that the air assist plays an important role in the electrostatic elimination process of the charged pipe. A simple model using a charged pipe and a grounded sphere was also proposed. By calculating the electric field strength formed by the charges on the cylinder and its image charges inside the grounded sphere, the electric field distribution in the center axis of the charged pipe could be estimated analytically. The efficiency of charge elimination was found to be a function of the dimension of the charged pipe, the radius of the grounded sphere and the initial potential at the center of the charged pipe.
机译:开发了一种空气辅助的被动电离器,以消除管道,漏斗或料仓中积聚的带电粒子上的静电荷。电离器是带有尖锐尖端的接地电极,由于带电粒子产生的电场,电晕放电发生在电晕放电器上。使用带电的塑料管来测试被动电离器的性能。将电离器放置在带电管道的中心,以有效满足电晕起始条件。快速气流被供应到电离器的尖端,以提高静电消除的效率。在有空气辅助和无空气辅助的情况下,测量消除静电之前和之后带电管道的表面电势分布。结果表明,空气辅助在带电管道的静电消除过程中起着重要作用。还提出了一个使用带电管道和接地球的简单模型。通过计算圆柱体上的电荷及其在接地球体内部的图像电荷形成的电场强度,可以分析地估计带电管道中心轴上的电场分布。发现消除电荷的效率是被充电管道的尺寸,接地球体的半径和被充电管道中心处的初始电势的函数。

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