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Kinetics of ignition of saturated hydrocarbons by nonequilibrium plasma: CH4-containing mixtures

机译:非平衡等离子体:含CH4的混合物点燃饱和烃的动力学

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Kinetics of ignition in a CH_4:O_2:Ar mixture under the action of a high-voltage,nanosecond discharge has been studied experimentally and numerically. Ignition delay time behind a reflected shock wave was measured with and without the discharge..It was shown that the initiation of the gas discharge with a specific deposited energy of 10-30 mJ/cm~3 leads to an orders-of-magnitude decrease in ignition delay time. Discharge processes and following chain chemical reactions with energy release were simulated separately because of an essential difference in their time scales. A kinetic scheme was developed to simulate the production of active particles during the discharge and in its afterglow. The generation of atoms, radicals, and excited and charged particles was numerically simulated using measured time-resolved discharge current and electric field in the discharge phase. The calculated densities of active particles were used as input data to simulate plasma-assisted ignition of methane. The calculated ignition delay time agrees well with experimental data. Analysis of the simulation results showed that the effect of nonequilibrium plasma on ignition delay is primarily associated with faster development of chain reactions due to O and H atoms produced by electron impact dissociation of molecules in the discharge phase.
机译:实验和数值研究了CH_4:O_2:Ar混合物在高压纳秒放电作用下的点火动力学。在有或没有放电的情况下测量了反射冲击波后的点火延迟时间。结果表明,以10-30 mJ / cm〜3的比沉积能量开始气体放电会导致数量级降低。在点火延迟时间。由于时间尺度上的本质差异,分别模拟了放电过程和随后的伴随能量释放的链式化学反应。开发了一种动力学方案来模拟放电期间及其余辉中活性颗粒的产生。使用测得的时间分辨放电电流和放电阶段的电场,对原子,自由基以及激发和带电粒子的生成进行数值模拟。所计算出的活性颗粒的密度用作输入数据,以模拟甲烷的等离子体辅助点火。计算出的点火延迟时间与实验数据吻合良好。对模拟结果的分析表明,非平衡等离子体对点火延迟的影响主要与链反应的更快发展有关,这是由于放电阶段分子的电子碰撞使O和H原子产生的。

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