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Modeling soot formation from solid complex fuels

机译:模拟固体复合燃料中的烟尘形成

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摘要

A detailed model is proposed for predicting soot formation from complex solid fuels. The proposed model resolves two particle size distributions, one for soot precursors and another for soot particles. The precursor size distribution is represented with a sectional approach while the soot particle-size distribution is represented with the method of moments and an interpolative closure method is used to resolve fractional methods. Based on established mechanisms, this model includes submodels for precursor coagulation, growth, and consumption, as well as soot nucleation, surface growth, agglomeration, and consumption. The model is validated with comparisons to experimental data for two systems: coal combustion over a laminar flat-flame burner and biomass gasification. Results are presented for soot yield for three coals at three temperatures each, and for soot yield from three types of biomass at two temperatures each. These results represent a wide range of fuels and varying combustion environments, demonstrating the broad applicability of the model. (C) 2018 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:提出了一个详细的模型来预测由复杂固体燃料形成的烟灰。所提出的模型解析了两种粒径分布,一种用于烟尘前体,另一种用于烟尘颗粒。前体粒度分布用截面方法表示,而烟尘粒度分布用矩量法表示,并采用内插法封闭分数法。基于已建立的机制,此模型包括用于前体凝结,生长和消耗以及烟灰成核,表面生长,附聚和消耗的子模型。通过与两个系统的实验数据进行比较来验证该模型:层流平焰燃烧器燃烧煤炭和生物质气化。给出了每种温度在三种温度下三种煤的烟灰收率,以及每种温度在三种温度下来自三种生物质的烟灰收率的结果。这些结果代表了各种各样的燃料和变化的燃烧环境,证明了该模型的广泛适用性。 (C)2018年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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