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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Kinetic mechanism of plasma-assisted ignition of hydrocarbons
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Kinetic mechanism of plasma-assisted ignition of hydrocarbons

机译:碳氢化合物等离子点火的动力学机理

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摘要

Ignition of hydrocarbon-containing gaseous mixtures has been studied experimentally and numerically under the action of a high-voltage nanosecond discharge at elevated temperatures. Ignition delay times were measured behind a reflected shock wave in stoichiometric CnH2n+2 : O-2 mixtures (10%) diluted with Ar (90%) for n = 1-5. It was shown that the application of the gas discharge leads to more than an order of magnitude decrease in ignition delay time for all hydrocarbons under consideration. The measured values of ignition delay time agree well with the results of a numerical simulation of the ignition based on the calculation of atom and radical production during the discharge and in its afterglow. The analysis of simulation results showed that a non-equilibrium plasma favours the ignition mainly due to O atoms produced in the active phase of the discharge.
机译:已经在高温下在高压纳秒放电的作用下,通过实验和数值研究了含烃气体混合物的点火。在化学计量的CnH2n + 2:O-2混合物(10%)中用Ar(90%)稀释,n = 1-5时,在反射冲击波后面测量了点火延迟时间。结果表明,考虑到所有碳氢化合物,气体放电的应用会导致点火延迟时间减少一个数量级以上。点火延迟时间的测量值与基于在放电期间及其余辉中原子和自由基产生的计算得出的点火数值模拟结果非常吻合。对模拟结果的分析表明,非平衡等离子体有利于点火,这主要是由于在放电的活性相中产生了O原子。

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