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INVESTIGATION OF SPECIES CONCENTRATION AND SOOT FORMATION IN A CO-FLOWING DIFFUSION FLAME OF ETHYLENE

机译:乙烯共流扩散火焰中物种浓度和烟尘形成的研究

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摘要

A detailed kinetic mechanism is presented to model the combustion process and the formation of particulates in a co-flowing laminar ethylene -air diffusion flame. The model includes hydrocarbon oxidation and pyrolysis, particle inception and coagulation, and finally surface growth and oxidation. Good agreement between model predictions and measurements of the general shape and structure of the flame are obtained. The model reproduces with reasonable accuracy the main oxidation and pyrolysis products as well as the concentration of hydroxyl radical as a function of radius at several heights. Soot volume fraction and mean particle size are moderately well predicted.
机译:提出了详细的动力学机制来模拟共流层状乙烯空气扩散火焰中的燃烧过程和微粒形成。该模型包括碳氢化合物的氧化和热解,粒子开始和凝结,最后是表面生长和氧化。在模型预测与火焰的一般形状和结构的测量之间获得了良好的一致性。该模型以合理的精度再现了主要氧化和热解产物以及羟基自由基浓度随半径在几个高度上的变化。烟灰体积分数和平均粒径可适当预测。

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