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首页> 外文期刊>Combustion theory and modelling >Kinetic parameters, collision rates, energy exchanges and transport coefficients of non-thermal electrons in premixed flames at sub-breakdown electric field strengths
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Kinetic parameters, collision rates, energy exchanges and transport coefficients of non-thermal electrons in premixed flames at sub-breakdown electric field strengths

机译:亚击穿电场强度下预混火焰中非热电子的动力学参数,碰撞速率,能量交换和输运系数

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The effects of an electric field on the collision rates, energy exchanges and transport properties of electrons in premixed flames are investigated via solutions to the Boltzmann kinetic equation. The case of high electric field strength, which results in high-energy, non-thermal electrons, is analysed in detail at sub-breakdown conditions. The rates of inelastic collisions and the energy exchange between electrons and neutrals in the reaction zone of the flame are characterised quantitatively. The analysis includes attachment, ionisation, impact dissociation, and vibrational and electronic excitation processes. Our results suggest that Townsend breakdown occurs for E/N = 140 Td. Vibrational excitation is the dominant process up to breakdown, despite important rates of electronic excitation of CO, CO_2 and N_2 as well as impact dissociation of O_2 being apparent from 50 Td onwards. Ohmic heating in the reaction zone is found to be negligible (less than 2% of peak heat release rate) up to breakdown field strengths for realistic electron densities equal to 10~(10) cm~(-3). The observed trends are largely independent of equivalence ratio. In the non-thermal regime, electron transport coefficients are insensitive to mixture composition and approximately constant across the flame, but are highly dependent on the electric field strength. In the thermal limit, kinetic parameters and transport coefficients vary substantially across the flame due to the spatially inhomogeneous concentration of water vapour. A practical approach for identifying the plasma regime (thermal versus non-thermal) in studies of electric field effects on flames is proposed.
机译:通过对玻尔兹曼动力学方程的解,研究了电场对预混火焰中电子的碰撞速率,能量交换和传输性质的影响。在子击穿条件下,详细分析了高电场强度导致高能非热电子的情况。定量分析了火焰反应区中非弹性碰撞的速率以及电子与中性粒子之间的能量交换。分析包括附着,电离,冲击解离以及振动和电子激发过程。我们的结果表明,汤森德击穿发生在E / N = 140 Td时。尽管从50 Td开始会出现CO,CO_2和N_2的重要电子激发速率以及O_2的冲击解离,但振动激发是直至分解的主要过程。对于实际电子密度等于10〜(10)cm〜(-3)的情况,发现直至反应堆的击穿电场强度,反应区的欧姆加热都可以忽略不计(不到峰值放热速率的2%)。观察到的趋势在很大程度上与当量比无关。在非热态下,电子传输系数对混合物成分不敏感,在整个火焰中近似恒定,但高度依赖于电场强度。在热极限内,由于水蒸气的空间不均匀浓度,动力学参数和传输系数在整个火焰上变化很大。在研究电场对火焰的影响时,提出了一种确定等离子体状态(热与非热)的实用方法。

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