Laminar Burning Velocities of Atmospheric Coal Air Mixtures

H. Park, Y. Park
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引用次数: 5

Abstract

Abstract The mechanism for laminar dust flame propagation can only be elucidated from a comprehensive mathematical model which incorporates conduction and radiation, as well as the chemical kinetics of particle devolatilization and gas phase and char rea ction. The mathematical model for a flat, laminar, premixed coal-air flame is applied to the atmospheric coal-air mixtures studied by Smoot and co-workers, and comparisons are made with their measurements and predictions. Here the principal parameter for comparison is the laminar burning velocity. The studies of Smoot and co-workers are first reviewed and compared with those predicted by the present model. The effects of inlet temperature and devolatilization rate constants on the burning velocities are studied with the present model, and compared with their measurements and predictions. Their m easured burning velocities are approximately predicted with the pr esent model at relatively high coal concentrations, with a somewhat increased inlet temperature. From the comparisons, their model might over-estimate particle temperature and rates of devolatilization. This would enable coal-air mixtures to be burned without any form of preheat and would tend to increase their computed values of burning velocity.
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大气煤-空气混合物的层流燃烧速度
摘要层流粉尘火焰的传播机理只能从一个综合了传导和辐射的数学模型,以及颗粒脱挥发、气相和炭反应的化学动力学来解释。将平坦层流预混煤-空气火焰的数学模型应用于Smoot等研究的大气煤-空气混合物,并与他们的测量和预测结果进行了比较。这里比较的主要参数是层流燃烧速度。首先回顾了Smoot及其同事的研究,并与本模型预测的结果进行了比较。用该模型研究了进口温度和脱挥发速率常数对燃烧速度的影响,并与实测和预测结果进行了比较。在相对较高的煤浓度下,随着入口温度的升高,用目前的模型可以近似地预测它们的燃烧速度。从比较来看,他们的模型可能高估了颗粒温度和脱挥发速率。这将使煤-空气混合物在没有任何形式预热的情况下燃烧,并倾向于增加燃烧速度的计算值。
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