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Understanding soot particle size evolution in laminar ethylene/air diffusion flames using novel soot coalescence models

机译:使用新型烟灰聚结模型了解层状乙烯/空气扩散火焰中烟灰粒度演变

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摘要

Two coalescence models based on different merging mechanisms are introduced. The effects of the soot coalescence process on soot particle diameter predictions are studied using a detailed sectional aerosol dynamic model. The models are applied to a laminar ethylene/air diffusion flame, and comparisons are made with experimental data to validate the models. The implementation of coalescence models significantly improves the agreement of prediction of particle diameters with the experimental data. Sensitivity of the soot prediction to the coalescence parameters is analysed. Finally, an update to the coalescence model based on experimental observations of soot particles in the flame oxidation regions has been introduced to improve its predicting capabilities.
机译:介绍了两种基于不同合并机制的合并模型。使用详细的截面气溶胶动力学模型研究了烟灰聚结过程对烟灰粒径预测的影响。将模型应用于层状乙烯/空气扩散火焰,并与实验数据进行比较以验证模型。合并模型的实施大大提高了粒径预测与实验数据的一致性。分析了烟灰预测对聚结参数的敏感性。最后,引入了基于火焰氧化区域中烟尘颗粒实验观察的聚结模型更新,以提高其预测能力。

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