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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Numerical modelling of negative discharges in air with experimental validation
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Numerical modelling of negative discharges in air with experimental validation

机译:空气中负放电的数值模拟与实验验证

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Axisymmetric finite element models have been developed for the simulation of negative discharges in air without and with the presence of dielectrics. The models are based on the hydrodynamic drift-diffusion approximation. A set of continuity equations accounting for the movement, generation and loss of charge carriers (electrons, positive and negative ions) is coupled with Poisson's equation to take into account the effect of space and surface charges on the electric field. The model of a negative corona discharge (without dielectric barriers) in a needle-plane geometry is analysed first. The results obtained show good agreement with experimental observations for various Trichel pulse characteristics. With dielectric barriers introduced into the discharge system, the surface discharge exhibits some similarities and differences to the corona case. The model studies the dynamics of volume charge generation, electric field variations and charge accumulation over the dielectric surface. The predicted surface charge density is consistent with experimental results obtained from the Pockels experiment in terms of distribution form and magnitude.
机译:已经开发了轴对称有限元模型,用于模拟不带电介质和带电介质的空气中的负放电。这些模型基于流体动力漂移-扩散近似。一组考虑电荷载流子(电子,正离子和负离子)的运动,产生和损失的连续性方程与泊松方程耦合,以考虑空间电荷和表面电荷对电场的影响。首先分析针平面几何形状中的负电晕放电(无介电势垒)模型。获得的结果与各种Trichel脉冲特性的实验观察结果吻合良好。将介电阻挡层引入放电系统后,表面放电与电晕壳表现出一些相似之处和不同之处。该模型研究电介质表面上体积电荷生成,电场变化和电荷累积的动力学。预测的表面电荷密度与从Pockels实验获得的实验结果一致,即分布形式和大小。

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