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Experimental and numerical investigationson the interactions of volatile flameand char combustion of a coal particle

机译:实验和数值研究煤颗粒挥发性抗絮凝燃烧的相互作用

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摘要

The model that takes chemical reactions, heat and mass transfers in the boundary layer of the particle into account simultaneously, is developed for simulating the combustion of a pulverized coal particle. The FTIR in situ temperature-measurements and the comparison between numerical simulations for the pulverized coal and the devolatilized char show that the volatile flame induces the combustion of the primary product of surface oxidation CO. Due to the influence of volatile flame, the char particle can be ignited at temperature lower than its heterogeneous ignition temperature, which elucidates the physical essence of joint hetero-homogeneous ignition mode discovered by Jüntgen.
机译:开发了在颗粒的边界层中进行化学反应,热量和质量转移的模型,用于模拟煤粉颗粒的燃烧。 FTIR在原位温度测量和粉煤煤的数值模拟之间的比较表明,挥发性火焰诱导表面氧化有限公司初级产物的燃烧。由于挥发性火焰的影响,炭颗粒可以在低于其非均相点火温度的温度下点燃,这阐明了Jüntgen发现的关节异质点火模式的物理本质。

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