A numerical model for the electrical breakdown of air within a gap under standard atmospheric conditions: One-dimensional versus two-dimensional approach

D. Smith, S. McMeekin, B. Stewart, P. Wallace
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引用次数: 2

Abstract

A numerical model which simulates the electrical breakdown of air between parallel-plates at atmospheric pressure is presented in this paper. The modelling techniques and results are compared using a one-dimensional and two-dimensional axisymmetrical approach. Hydrodynamic drift-diffusion equations are coupled with the Poison equation and solved for the transportation of electrons, positive ions and negative ions in an electric field. A negative DC voltage is applied to the cathode at various gap separation distances and the voltage is increased until sparking occurs. Sparking voltage to separation distance characteristic curves are derived and compared to the Paschen curve. Calculations are made for the external discharge current for varying separation gaps. A characteristic curve of current versus voltage is evaluated against typical curves found in the literature. The discharge regime regions leading to a Townsend discharge are identified from the numerical simulations.
标准大气条件下间隙内空气电击穿的数值模型:一维与二维方法
本文建立了一个模拟大气压下平行板间空气电击穿的数值模型。采用一维和二维轴对称方法对建模技术和结果进行了比较。将流体动力学漂移扩散方程与Poison方程耦合,求解了电子、正离子和负离子在电场中的输运问题。在不同的间隙分离距离上向阴极施加负直流电压,并增加电压,直到发生火花。导出了火花电压-分离距离特性曲线,并与Paschen曲线进行了比较。计算了不同分离间隙下的外部放电电流。根据文献中发现的典型曲线,对电流与电压的特征曲线进行了评估。通过数值模拟,确定了导致汤森德放电的放电区。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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