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Numerical studies of the high power microwave breakdown in gas using the fluid model with a modified electron energy distribution function

机译:修正电子能量分布函数的流体模型对高功率微波在气体中击穿的数值研究

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摘要

A modified electron energy distribution function (EEDF) is introduced into the fluid model and its effects on the high power microwave (HPM) breakdown in air and argon are investigated. A proper numerical scheme for the finite-difference time-domain method is employed to solve the fluid model. Numerical simulations show that the HPM breakdown time in argon predicted by the fluid model with the modified EEDF agrees well with the results of Particle-in-cell-Monte Carlo collision simulations, while the Maxwellian EEDF results in faster HPM breakdown when the mean electron energy is less than 20 eV. We also confirm that the Maxwellian EEDF can be used in the fluid model for simulating the air breakdown at the low frequencies based on the reported experiments.
机译:将改进的电子能量分布函数(EEDF)引入流体模型,并研究其对空气和氩气中高功率微波(HPM)击穿的影响。有限差分时域方法的一个适当的数值方案被用来求解流体模型。数值模拟表明,采用改进的EEDF的流体模型预测的氩气中HPM的击穿时间与粒子内蒙特卡罗碰撞模拟的结果非常吻合,而当平均电子能量为Maxwellian EEDF时,HPM的击穿速度更快。小于20 eV。我们还证实,根据报道的实验,可以在流体模型中使用Maxwellian EEDF来模拟低频下的空气击穿。

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