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Investigations on the ignition of high-voltage glow discharges

机译:高压辉光放电的点火研究

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The ignition of high-voltage glow discharges at voltages of several kilovolts cannot be described by the Townsend theory. Therefore a simulation code was developed, which allows one to estimate the influence of several elementary processes during the ignition process and to calculate ignition curves. One result of these simulations is that secondary electron emission by electron impact at the anode is very important for production of charged particles. Experimental measurements of ignition voltage yield that the similarity law Un=f(pd) is not valid. The ignition voltage decreases with increasing electric field, which can be related to changes in ionization cross sections and secondary emission coefficients due to the high electric fields of several kilovolts per centimetre.
机译:在几千伏的电压下点燃高压辉光放电不能用汤森理论来描述。因此,开发了一种模拟代码,该代码允许人们估计点火过程中几个基本过程的影响并计算点火曲线。这些模拟的一个结果是,电子撞击在阳极产生的二次电子发射对于带电粒子的产生非常重要。点火电压的实验测量结果显示,相似性定律Un=f(pd)无效。点火电压随着电场的增加而降低,这可能与电离截面和二次发射系数的变化有关,这是由于每厘米几千伏的高电场造成的。

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