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Characteristics of Syngas Combustion Based on Methane at Various Reforming Ratios

机译:基于各种重整比的甲烷合成气燃烧特征

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Characteristics of syngas combustion at various reforming ratios were studied numerically. The syngas was formed by the partial oxidation of methane to mainly hydrogen and carbon monoxide and cooled to ambient temperature. Stoichiometric and lean premixed flames of the mixtures of methane and the syngas were compared at the atmospheric temperature and pressure conditions. The adiabatic flame temperature decreased with the reforming ratio. The laminar burning velocity, however, increased with the reforming ratio. For stretched flames in a counterflow, the high temperature region was broadened with the reforming ratio. The maximum flame temperature decreased with the reforming ratio for the stoichiometric case, but increased for the lean case except for the region of very low stretch rate. The extinction stretch rate increased with the reforming ratio, implying that the syngas assisted flame is more resistance to turbulence level. Fuel reforming can reduce EINO as compared to the case of unreformed fuel for the case of stoichiometric combustion.
机译:在数值上研究了各种重整比的合成气燃烧的特征。通过甲烷部分氧化以主要氢和一氧化碳形成合成气并冷却至环境温度。化学计量和甲烷的混合物,并且所述合成气的稀薄预混合火焰在大气温度和压力条件下进行了比较。含有重整率的绝热火焰温度降低。然而,层状燃烧速度随着重整比而增加。对于逆流的拉伸火焰,高温区域随着重整比扩大。最大火焰温度随着化学计量壳体的重整比而降低,但除了极低拉伸速率的区域之外,瘦案件的增加率增加。消光拉伸速率随着重整比而增加,这意味着合成气辅助火焰更耐受湍流水平。与化学计量燃烧的情况相比,燃料重整可以减少eino。

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