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Two dimensional studies of Trichel pulses in air using the finite element method

机译:空气中Trichel脉冲的二维有限元研究

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The formation of Trichel pulses using two dimensional axisymmetric finite element (FE) simulations is presented in this paper. The hydrodynamic drift-diffusion approximation is used to model the phenomenon and the simulation is based on solving the coupled system of partial differential equations accounting for the transport of charged particles and Poisson's equation for the electric field. A needle-plane geometry with an air gap and constant negative step voltage is analysed at atmospheric pressure. The charge distributions and electric field variations during the formation of the first pulse are studied in detail. Factors influencing the first pulse shape, frequency and magnitude of subsequent Trichel pulses, namely the secondary emission coefficient and applied voltage, are also investigated.
机译:本文介绍了使用二维轴对称有限元(FE)模拟形成的Trichel脉冲。流体动力学漂移扩散近似被用来对这一现象进行建模,并且该模拟是基于求解偏微分方程耦合系统的,该耦合方程解释了带电粒子的传输和电场的泊松方程。在大气压下分析具有气隙和恒定负阶跃电压的针平面几何形状。详细研究了第一脉冲形成期间的电荷分布和电场变化。还研究了影响随后的Trichel脉冲的第一个脉冲形状,频率和幅度的因素,即次级发射系数和施加的电压。

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