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Plasma-Enhanced Ignition and Flame Stabilization in Microwave Plasma-Assisted Combustion of Premixed Methane/Oxygen/Argon Mixtures

机译:预混合甲烷/氧气/氩气混合物的微波等离子体燃烧中的等离子体增强点火和火焰稳定

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The microwave plasma-assisted combustion (PAC) of premixed methane/oxygen/argon mixtures was investigated. A U-shaped dual-layer curve of fuel ignition/flame stabilization limit was observed, which shows the effects of the plasma power on the fuel ignition and flame stabilization. The PAC flame images revealed a quasi-stabilized flame region that is located in the gap between the upper (the fuel ignition limit) and lower layers (the flame stabilization limit). Optical emission spectroscopy showed different emission spectral features at the same plasma power but in different up-tunings (increasing the plasma power from low to high) and down-tunings (decreasing the plasma power from high to low) of the plasma power, which suggested that different chemical pathways were involved in these two processes. Cavity ringdown spectroscopy measurements of OH(X) number density outside the combustor showed that the OH(X) number density is on the order of molecule cm when the PAC flame was achieved yet zero when the PAC flame was not achieved. It is speculated that the OH(X) radical plays an important role in the flame stabilization in the PAC.
机译:研究了预混合甲烷/氧气/氩气混合物的微波等离子体辅助燃烧(PAC)。观察到燃料点燃/火焰稳定极限的U形双层曲线,其示出了等离子体功率对燃料点燃和火焰稳定的影响。 PAC火焰图像显示了一个准稳定的火焰区域,该区域位于上层(燃料着火极限)和下层(火焰稳定极限)之间的间隙中。光学发射光谱法在相同的等离子功率下显示出不同的发射光谱特征,但是在等离子功率的上调(下调功率从低到高)和下调(下调功率从高到低)方面表明这两个过程涉及不同的化学途径。燃烧室外部OH(X)数密度的腔衰荡光谱测量显示,当达到PAC火焰时,OH(X)数密度为分子厘米数量级,而当未达到PAC火焰时,OH(X)数密度为零。据推测,OH(X)自由基在PAC的火焰稳定中起重要作用。

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