Streamer formation and Monte Carlo space-charge field calculation in SF/sub 6/

J. Liu, G. Raju
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引用次数: 8

Abstract

A Monte Carlo simulation is carried out for SF/sub 6/ in uniform electric fields, with 7% and 14% overvoltages and at two gas densities at each overvoltage. The electron motion and avalanche growth are simulated by tracing individual paths, and the effect of space charge is included by solving the Poisson equation. The streamer propagation, the electron and positive and negative ion distributions and space charge fields are studied in detail as more time has lapsed after voltage application. The simulated streamer shape explains for the first time the dark space in SF/sub 6/ streamers observed experimentally. It is found that the mechanism of streamer propagation in an attaching gas is different from that in a nonattaching gas. The maximum field enhancement is just behind the streamer or between two successive streamers in SF/sub 6/. The anode-directed streamer propagates with a velocity of 10/sup 7/ to 10/sup 8/ cm/s, depending on the percentage of overvoltage and the gas number density. >
SF/sub / 6中拖缆形成和蒙特卡罗空间电荷场计算
对SF/sub 6/在7%和14%过电压和两种气体密度下的均匀电场下进行了蒙特卡罗模拟。通过跟踪电子运动和雪崩生长的路径来模拟电子运动和雪崩生长,并通过求解泊松方程来考虑空间电荷的影响。详细地研究了施加电压后随着时间的延长而产生的流光传播、电子和正负离子的分布以及空间电荷场。模拟的流光形状首次解释了实验观测到的SF/sub 6/流光中的暗空间。研究发现,在附著气体和非附著气体中,流光的传播机制是不同的。在SF/sub 6/中,最大的场增强就在拖缆后面或两个连续拖缆之间。阳极导向流的传播速度为10/sup 7/至10/sup 8/ cm/s,具体取决于过电压百分比和气体数密度。>
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