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Simulation of the ignition of a methane-air mixture by a high-voltage nanosecond discharge

机译:高压纳秒放电模拟甲烷-空气混合物的点火

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摘要

The ignition dynamics of a CH4: O-2: N-2: Ar = 1: 4: 15: 80 mixture by a high-voltage nanosecond discharge is simulated numerically with allowance for experimental data on the dynamics of the discharge current and discharge electric field. The calculated induction time agrees well with experimental data. It is shown that active particles produced in the discharge at a relatively low deposited energy can reduce the induction time by two orders of magnitude. Comparison of simulation results for mixtures with and without nitrogen shows that addition of nitrogen to the mixture leads to a decrease in the average electron energy in the discharge and gives rise to new mechanisms for accumulation of oxygen atoms due to the excitation of nitrogen electronic states and their subsequent quenching in collisions with oxygen molecules. Acceleration of the discharge-initiated ignition is caused by a faster initiation of chain reactions due to the production of active particles, first of all oxygen atoms, in the discharge.
机译:数值模拟了CH4:O-2:N-2:Ar = 1:4:15:80混合气体通过高压纳秒放电的着火动力学,并提供了有关放电电流和放电电动力学的实验数据领域。计算得出的诱导时间与实验数据吻合良好。已经表明,在放电中以相对低的沉积能量产生的活性颗粒可以将感应时间减少两个数量级。比较含氮和不含氮的混合物的模拟结果表明,向混合物中添加氮会导致放电中平均电子能量的降低,并且由于氮电子态和氮原子的激发而引起了氧原子积累的新机制。它们随后与氧分子碰撞而猝灭。放电引发的点火的加速是由链反应的更快引发引起的,这是由于在放电过程中首先产生了活性粒子,首先是氧原子。

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