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Non-equilibrium electron and vibrational distributions under nanosecond repetitively pulsed CO discharges and afterglows: I. optically thick plasmas

机译:在纳秒重复脉冲CO放电和余量下的非平衡电子和振动分布:I.光学厚等离子体

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摘要

Nanosecond repetitively pulsed (NRP) atmospheric discharges in reacting CO mixtures have been investigated by considering different case studies obtained by changing the interpulse delay time (tid) in the range 1–25 μs and the gas temperature in the range 500–2000 K. Molar fractions of neutral and ionized particles, including free electrons as well as electron energy distribution (eedf) and vibrational distribution (vdf) functions, have been discussed by solving an appropriate Boltzmann equation and a sophisticated state-to-state vibrational kinetics of CO coupled with a simplified plasma-chemistry, describing the most important chemical species including electronic excited states. Large deviations of eedf from the Maxwell distributions are observed, especially at low tid values, as a result of superelastic electronic collisions (SEC) acting in postdischarge and mainly involving CO electronic excited states. Numerous peaks are observed in the eedf because the present study deals with so-called optically thick plasmas when radiative emission is totally reabsorbed. Non-equilibrium vdf are also observed, with plateaux tending to decrease with an increase in gas temperature, which weakens the V–V up pumping mechanism.
机译:通过考虑通过改变1-25μs和500-2000k摩尔范围内的气体温度,通过改变间断延迟时间(TID)获得的不同案例研究,研究了反应CO混合物中的纳秒重复脉冲(NRP)大气排放。通过求解适当的Boltzmann方程和CO的复杂状态 - 与状态振动动力学,已经讨论了中性和离子化颗粒的级分,包括游离电子以及电子能量分布(EEDF)和振动分布(VDF)功能一种简化的等离子体化学,描述了最重要的化学物质,包括电子兴奋状态。观察到EEDF从麦克斯韦分布的大偏差,特别是在低于低置的低TID值,这是在后收费中作用的超弹性电子碰撞和主要涉及CO电子激发状态。在EEDF中观察到许多峰,因为当前研究涉及所谓的光学厚等离子体,当辐射发射完全重新吸收时。还观察到非平衡VDF,平稳化趋于随着气体温度的增加而降低,这削弱了V-V升压泵送机构。

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