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首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Fast gas heating in N-2/O-2 mixtures under nanosecond surface dielectric barrier discharge: the effects of gas pressure and composition
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Fast gas heating in N-2/O-2 mixtures under nanosecond surface dielectric barrier discharge: the effects of gas pressure and composition

机译:纳秒级表面介电势垒放电下N-2 / O-2混合物中的快速气体加热:气体压力和组成的影响

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The fractional electron power quickly transferred to heat in non-equilibrium plasmas was studied experimentally and theoretically in N-2/O-2 mixtures subjected to high electric fields. Measurements were performed in and after a nanosecond surface dielectric barrier discharge at various (300-750 Torr) gas pressures and (50-100%) N-2 percentages. Observations showed that the efficiency of fast gas heating is almost independent of pressure and becomes more profound when the fraction of O-2 in N-2/O-2 mixtures increases. The processes that contribute towards the fast transfer of electron energy to thermal energy were numerically simulated under the conditions considered. Calculations were compared with measurements and the main channels of fast gas heating were analysed at the gas pressures, compositions and electric fields under study. It was shown that efficient fast gas heating in the mixtures with high fraction of O-2 is due to a notable contribution of heat release during quenching of electronically excited N-2 states in collisions with O-2 molecules and to ion-ion recombination. The effect of hydrocarbon addition to air on fast gas heating was numerically estimated. It was concluded that the fractional electron power transferred to heat in air, as a first approximation, could be used to estimate this effect in lean and stoichiometric hydrocarbonair mixtures.
机译:在经受高电场的N-2 / O-2混合物中,从实验和理论上研究了在非平衡等离子体中迅速传递给热的分数电子功率。在各种(300-750托)气压和(50-100%)N-2百分比的纳秒表面介电势垒放电中和放电后进行测量。观察结果表明,快速加热气体的效率几乎与压力无关,并且当N-2 / O-2混合物中O-2的比例增加时,气体的加热效率会更高。在考虑的条件下,通过数值模拟了有助于将电子能量快速转换为热能的过程。将计算结果与测量结果进行比较,并在研究的气体压力,组成和电场下分析了快速气体加热的主要通道。结果表明,在O-2含量高的混合物中,高效的气体快速加热是由于在与O-2分子碰撞时电子激发的N-2状态猝灭过程中放热的显着作用以及离子-离子重组。数值估算了将碳氢化合物添加到空气中对快速燃气加热的影响。结论是,作为第一近似,传递到空气中的热量的分数电子功率可用于估计稀和化学计量的烃空气混合物中的这种作用。

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