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Soot formation in inverse diffusion flames of diluted ethene

机译:稀乙烯逆扩散火焰中的碳黑形成

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摘要

Experimental measurements of flame structure and soot characteristics were performed for ethene inverse diffusion flames (IDFs). IDFs are considered as an ideal flow field for studying incipient soot because the soot particles do not experience the oxidation process. In this study, an laser-induced fluorescence image clarified the reaction zone of IDFs with OH signal and polycyclic aromatic hydrocarbon distribution. A laser scattering technique also identified the soot particles. To address the degree of soot maturing, the carbon to hydrogen ratio and morphology of the soot sample were investigated. From the measurements, the effect of flow residence time and temperature on soot inception could be estimated, and more details on soot characteristics in the IDFs were determined according to the fuel dilution ratio and air/fuel ratio. Fuel dilution results in a decrease of temperature and an enhancement of residence time, but the critical dilution mole fraction is found for which temperature does not effect soot growth. Soot inception is also found to be weakly dependent on temperature as influenced by fuel dilution.
机译:对乙烯逆扩散火焰(IDF)进行了火焰结构和烟so特性的实验测量。 IDF被认为是研究初生烟灰的理想流场,因为烟灰颗粒没有经历氧化过程。在这项研究中,激光诱导的荧光图像阐明了IDF与OH信号和多环芳烃分布的反应区。激光散射技术还可以识别烟灰颗粒。为了解决烟灰的成熟程度,研究了烟灰样品的碳氢比和形态。通过这些测量,可以估算出流动停留时间和温度对烟灰开始的影响,并根据燃料稀释率和空燃比确定了IDF中烟灰特性的更多细节。燃料稀释会降低温度并增加停留时间,但发现临界稀释摩尔分数的温度不会影响烟灰的生长。还发现,受燃料稀释的影响,烟灰开始几乎不依赖于温度。

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