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Emission Characteristics of Heat Recirculating Porous Burners With High Temperature Energy Extraction

机译:高温能量提取热再循环多孔燃烧器的排放特性

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摘要

Emission characteristics of heat recirculating porous burners with high temperature heat extraction are studied numerically. Two types of burners are considered: counterflow porous burner (CFB) and reciprocal counterflow porous burner (RCFB). The combustion of methane-air mixtures flowing through the porous media is modeled by solving steady state governing equations to obtain the flame temperature and species profiles. Formation of CO, NO, NO2, and NOx is studied in CFB and RCFB in a range of equivalence ratios from 0.3 to 1.0 and heat extraction temperatures from 300 to 1,300 K. The contribution of various NO formation mechanisms is comparatively analyzed and related to the NO generation predicted by a detailed chemistry mechanism. The effect of high temperature heat extraction on the formation of CO and NOx is analyzed. Numerical predictions indicate a constant monotonic decrease of NOx concentration with increasing temperature of energy extraction. The formation of CO is observed to follow the similar trend. For heat extraction at 1,300 K, simulations predicted 3.6 ppm of NOx and 3.9 ppm of CO for CFB and 4.1 ppm of NOx and 3.5 ppm of CO for RCFB when these burners are operated at an equivalence ratio of 0.7.
机译:在数值上研究了具有高温热萃取的热再循环多孔燃烧器的排放特性。考虑了两种类型的燃烧器:逆流多孔燃烧器(CFB)和互易逆流多孔燃烧器(RCFB)。通过求解稳态控制方程来建模流过多孔介质的甲烷空气混合物的燃烧,以获得火焰温度和物种型材。在CFB和NO 2的形成中形成CO,NO,NO 2和NOx在等效比率范围内,从0.3到1.0和300〜1,300 K的热提取温度。各种没有形成机制的贡献相对分析并与之相关没有通过详细的化学机制预测。分析了高温热提取对CO和NOx形成的影响。数值预测表明NOx浓度的恒定单调减少随着能量提取的增加而降低。观察到CO的形成遵循类似的趋势。对于1,300K的热萃取,模拟预测NOx 3.6ppm的NOx和3.9ppm的CFB和4.1ppm的NOx和3.5ppm,对于RCFB,当这些燃烧器以0.7的等效比率操作时,rcfb。

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