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Enhancing ignition and inhibiting extinction of methane diffusion flame by in situ fuel processing using dielectric-barrier-discharge plasma

机译:利用介电阻挡放电等离子体,通过原位燃料加工增强点火和抑制甲烷扩散火焰的消光

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This paper addresses the possibility that dielectric-barrier-discharge (DBD) can provide in situ fuel processing to manipulate methane diffusion flame, and this technology may be extended to other higher-order hydrocarbon fuels. In this work, an in situ fuel processing system, by coupling a DBD generator to the fuel nozzle, was developed to examine the chemical effect of the DBD on enhanced ignition and inhibited extinction of a CH4/O-2/Ar counterflow diffusion flame. Experimental results show that 25 kHz plasma reduces the ignition temperature by approximately 180 K, and extends the extinction limit by approximately 20% with a moderate stretch rate. DBD sustained in the fuel stream is expected to perform as a pool of radicals and active molecules to promote combustion, which was verified by the diagnosis of several key intermediate species. In situ planar laser-induced fluorescence (PLIF) technique mapped the profile of CH radical, and gas chromatograph measured some stable species, such as hydrogen and higher order hydrocarbons. Hydrogen is more reactive fuel; therefore, this paper gives further insight into hydrogen-enriched ignition by CHEMKIN-PRO, and it is found that the acceleration is approached through more efficient generation of H radical.
机译:本文解决了电介质阻挡 - 放电(DBD)可以提供原位燃料处理以操纵甲烷扩散火焰的可能性,并且该技术可以延伸到其他高阶烃料燃料。在这项工作中,通过将DBD发电机耦合到燃料喷嘴的原位燃料处理系统,以检查DBD对增强点火的化学效果,抑制CH4 / O-2 / AR逆流扩散火焰的灭火。实验结果表明,25kHz等离子体将点火温度降低约180 k,并以中等拉伸速率延伸大约20%的消光极限。预计诸如燃料流中持续的DBD将作为自由基和活性分子池进行以促进燃烧,这通过诊断若干关键中间物种进行验证。原位平面激光诱导的荧光(PLIF)技术映射了CH激进的曲线,气相色谱仪测量了一些稳定的物种,例如氢和高阶烃类。氢是更反应的燃料;因此,本文通过Chemin-Pro进一步了解富含富氢点火的富集,并且发现通过更有效地产生H激进的加速度。

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