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Experiment and Analysis for Effect of Floating Conductor on Electric Discharge Characteristic

机译:浮动导体对放电特性影响的实验分析

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In this paper, we present a numerical analysis method for analyzing the discharge characteristic with the presence of a floating conductor. Space charges generated during the discharge process can accumulate on the surface of the floating conductor, or be emitted from its surface. An intensification of the electric field around the floating conductor is affected by those space species. Therefore, it is important to calculate the space-charge distributions considering the surface charge on a floating conductor because the discharge occurs at the floating conductor, which is placed around the cathode. An axial symmetry finite-element model is used to analyze this floating conductor discharge system, and Poisson's equation is coupled with the hydrodynamic drift-diffusion equation to calculate space charge distributions. Fowler–Nordheim electron emission is employed for the boundary condition at conductor surfaces. The analysis results show the variation of the electric field due to the space charges and the surface charge density on the floating conductor. Experiments using corona generators are carried out, and the current data obtained show the space charge generated by the presence of a floating conductor.
机译:在本文中,我们提出了一种数值分析方法,用于分析存在浮置导体时的放电特性。在放电过程中产生的空间电荷可以累积在浮动导体的表面上,或从浮动导体的表面发射。这些漂浮物会影响浮动导体周围的电场强度。因此,重要的是考虑浮动导体上的表面电荷来计算空间电荷分布,因为放电发生在放置在阴极周围的浮动导体上。使用轴向对称有限元模型来分析该浮动导体放电系统,并将泊松方程与流体动力漂移-扩散方程耦合以计算空间电荷分布。 Fowler-Nordheim电子发射用于导体表面的边界条件。分析结果表明,由于浮动电荷上的空间电荷和表面电荷密度,电场发生了变化。进行了使用电晕发生器的实验,获得的电流数据显示了浮空导体的存在所产生的空间电荷。

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