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AN IMPROVED MOVING SECTIONAL AEROSOL MODEL OF SOOT FORMATION IN A PLUG FLOW REACTOR

机译:塞流反应器中改进的运动截面气溶胶模型

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In conjuction with aerosol dynamics theory and by incorporating complex gas phase and particulate phase chemistry, sectional soot models can provide a detailed description of soot particle structures formed in a combustion environment. A recently developed moving sectional approach has been improved in this study to provide a more accurate description of the soot particle size distribution. The soot prediction for a Plug Flow Reactor (PFR), which is fueled by an ethylene/air mixture (with the equivalence ratio of 2.2), has been compared with experimental data and simulation results provided by both the conventional fixed sectional approach and the method of moments model. The soot inception, surface growth/oxidation, and polycyclic aromatic hydrocarbon (PAH) condensation submodels were based on a previous study and coupled with a detailed reaction mechanism of C2 hydrocarbons. The results show that the improved moving sectional approach calculated a particle size distribution which was in good agreement with the fixed sectional approaches with finer grids, but required less CPU effort (less than 50%). The computed particle size distributions were validated by experimental data. The soot mass concentration and total number density predicted by three sectional approaches have been compared with the method of moments model for different simulation cases and it shows that the four numerical methods of aerosol soot model provided consistent results.
机译:结合气溶胶动力学理论,并通过结合复杂的气相和颗粒相化学,分段烟灰模型可以详细描述在燃烧环境中形成的烟灰颗粒结构。在这项研究中,最近开发的移动截面方法得到了改进,以提供烟灰粒度分布的更准确描述。将由乙烯/空气混合物(当量比为2.2)供油的塞流反应器(PFR)的烟灰预测与常规固定截面方法和方法提供的实验数据和模拟结果进行了比较。瞬间模型。烟灰起始,表面生长/氧化和多环芳烃(PAH)缩合子模型基于先前的研究,并结合了C2烃的详细反应机理。结果表明,改进的移动截面方法可计算出粒度分布,该分布与具有更细网格的固定截面方法非常吻合,但所需的CPU工作量较小(小于50%)。通过实验数据验证了计算出的粒度分布。将三种截面方法预测的烟尘质量浓度和总数密度与不同模拟情况下的矩量模型方法进行了比较,结果表明,四种气溶胶烟灰模型数值方法提供了一致的结果。

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