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首页> 外文期刊>International Journal of Automotive Technology >EXPERIMENTAL AND NUMERICAL INVESTIGATION OF FUEL MIXING EFFECTS ON SOOT STRUCTURES IN COUNTERFLOW DIFFUSION FLAMES
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EXPERIMENTAL AND NUMERICAL INVESTIGATION OF FUEL MIXING EFFECTS ON SOOT STRUCTURES IN COUNTERFLOW DIFFUSION FLAMES

机译:逆流扩散火焰中燃料混合效应对烟尘结构的实验和数值研究

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摘要

Experimental and numerical analyses of laminar diffusion flames were performed to identify the effect of fuel mixing on soot formation in a counterflow burner. In this experiment, the volume fraction, number density, and particle size of soot were investigated using light extinction/scattering systems. The experimental results showed that the synergistic effect of an ethylene-propane flame is appreciable. Numerical simulations showed that the benzene (C_6H_6) concentration in mixture flames was higher than in ethylene-base flames because of the increase in the concentration of propargyl radicals. Methyl radicals were found to play an important role in the formation of propargyl, and the recombination of propargyl with benzene was found to lead to an increase in the number density for cases exhibiting synergistic effects. These results imply that methyl radicals play an important role in soot formation, particularly with regard to the number density.
机译:进行了层流扩散火焰的实验和数值分析,以确定燃料混合对逆流燃烧器中烟灰形成的影响。在该实验中,使用消光/散射系统研究了烟灰的体积分数,数密度和粒径。实验结果表明,乙烯-丙烷火焰的协同作用是可观的。数值模拟表明,由于炔丙基自由基浓度的增加,混合火焰中的苯(C_6H_6)浓度高于基于乙烯的火焰。发现甲基在炔丙基的形成中起重要作用,并且对于显示协同作用的情况,炔丙基与苯的重组被发现导致数目密度的增加。这些结果表明,甲基自由基在烟灰形成中起着重要作用,特别是在数量密度方面。

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