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NO_x Minimization in Staged Combustion Using Rich Premixed Flame in Porous Media

机译:使用丰富的预混火焰在多孔介质中的分阶段燃烧中的NO_X最小化

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摘要

ABSTRACT Two-stage combustion of methane/air is studied experimentally and numerically with a focus on achieving ultralow NOx emissions. The primary flame is a rich premixed flame in the porous medium. The flame is stabilized in the range of equivalence ratios from 1.1 to 1.7 using upstream heat extraction. The products of the primary flame are rich in the partial oxidation and reforming products such as CO, H2, and CH4. Due to the self-regulated heat losses from the flame the maximum flame temperature of the primary flame remains close to 1700 K. The rich-flame environment and low-flame temperatures limit NOx formation in the primary flame. The NOx emission index of the primary flame shows a maximum at the equivalence ratio of 1.1 and reduces for richer mixtures. The products of the primary flame are burned in the secondary nonpremixed flame. The products could be intercooled to reduce temperature and minimize NOx formation in the secondary nonpremixed flame. The emission index of the secondary flame increases with the equivalence ratio. Variation of combined emission index shows a minimum value at the equivalence ratio of 1.2. The trend remains consistent with the intercooling of the primary flame products.
机译:摘要通过专注于实现UltraLow Nox排放,在实验上和数值上进行两级燃烧甲烷/空气。主火焰是多孔介质中的富含预混火焰。使用上游散热萃取从1.1至1.7稳定在等效比率范围内。主要火焰的产品富含部分氧化和重整产品,如CO,H 2和CH4。由于来自火焰的自调节热损失,主要火焰的最大火焰温度保持接近1700k。富焰环境和低火焰温度限制初级火焰中的NOx形成。初级火焰的NOx排放指数显示在等效比为1.1的最大值,并减少更丰富的混合物。主要火焰的产品在二次非普通火焰中燃烧。该产品可以是缩小的,以降低温度,并在二次非倒装火焰中最小化NOx形成。二次火焰的排放指数随着等效比增加。组合发射指数的变化显示在等效比为1.2的最小值。该趋势与主要火焰产品的中冷保持一致。

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