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SPECTROSCOPIC INVESTIGATION ON A MILD COMBUSTOR WITH INTERNAL RECIRCULATION

机译:内再循环温和燃烧器的光谱研究

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The paper is focused on a spectroscopic analysis of UV and visible naturally emitted light from a MILD combustor operated in the facility COMET at the research center of Casaccia, ENEA. The aim of the work was the determination of the spatial abundance of the main intermediate products of combustion in flameless oxidation mode with natural gas and air. The study shows evidences of consistent contributions to natural emission from the usual radicals (OH, CH and C_2, as in the ordinary hydrocarbon flames) in the proximity of the gas injection. Their abundance has been found to be strongly dependent on temperature and equivalence ratio Φ. While temperature increase determines an understandable faster ignition of the chemical mechanisms which lead to the observed radicals, the change from a rich to a lean mixture gives a similar faster radical production. The spectral information has been compared with images taken for one radical species (CH) only. The images confirm the spectral analysis giving credit to a strong localization of CH radical near the gas entrance and with spatial abundance depending on Φ.
机译:本文的重点是UV的光谱分析,并来自Casaccia,Casaccia的Casaccia,Enea的研究中心的温和燃烧器的可见天然发射的光。该作品的目的是测定具有天然气和空气的无毛氧化模式中燃烧主要中间产物的空间丰度。该研究表明,在气体喷射的附近,常规自由基(OH,CH和C_2,如普通烃火焰中的常规烃火焰中的自然发射的一致贡献的证据。已经发现它们的丰富是强烈的依赖性​​依赖于温度和等效比φ。虽然温度升高决定了导致观察到的自由基的化学机制的易懂的速度点火,但富含稀入混合物的变化使得具有相似的激进制备。已经将光谱信息与仅为一个自由基物种(CH)拍摄的图像进行了比较。图像确认光谱分析,使CH激进的强大定位的信贷根据Φ附近的CH激进分子,其空间丰度根据φ。

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