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Modified Vitiation in a Moderate or Intense Low-Oxygen Dilution (MILD) Combustion Furnace
Mi, J. ; Wang, F. ; Li, P. ; Dally, B. B.
刊名energy and fuels
2012
关键词FLAMELESS OXIDATION NOX EMISSIONS CGRI BURNER AIR
DOI10.1021/ef201161x
英文摘要This paper reports on the effects of various operational and geometric parameters on mixing and vitiation in a laboratory-scale furnace operating with natural gas and under the moderate or intense low-oxygen dilution (MILD) regime. The study is carried out through numerical modeling. Seven independent parameters are considered: i.e., mass fraction (f) of fuel diluents (CO2 and N-2), air preheat temperature (T-a), global equivalence ratio (phi), air nozzle exit diameter (D-a), fuel nozzle exit diameter (D-f), fuel air nozzles separation distance (S), and fuel injection angle from the furnace floor (alpha). The modeling is initially verified through a comparison to measurements by Szego et al. (Szego, G. G.; Dally, B. B.; Nathan, G. J. Combust. Flame 2008, 154, 281-295) in the same furnace geometry. It is shown that varying each of the parameters f, phi, D-a, D-f, S, and alpha can considerably influence the fuel-jet penetration distance and the recirculation rate of the exhaust gas, two important quantities for establishing the MILD combustion. Relatively, the geometric parameters D-a, D-f, S, and alpha play more effective roles in controlling the vitiation rate and, hence, "flame" characteristics. Also, it is revealed that influences of all of the parameters, except S, and alpha, can be represented by that of the ratio of the fuel injection momentum to the air injection momentum.; Energy & Fuels; Engineering, Chemical; SCI(E); EI; 16; ARTICLE; 1; 265-277; 26
语种英语
内容类型期刊论文
源URL[http://ir.pku.edu.cn/handle/20.500.11897/154694]  
专题工学院
推荐引用方式
GB/T 7714
Mi, J.,Wang, F.,Li, P.,et al. Modified Vitiation in a Moderate or Intense Low-Oxygen Dilution (MILD) Combustion Furnace[J]. energy and fuels,2012.
APA Mi, J.,Wang, F.,Li, P.,&Dally, B. B..(2012).Modified Vitiation in a Moderate or Intense Low-Oxygen Dilution (MILD) Combustion Furnace.energy and fuels.
MLA Mi, J.,et al."Modified Vitiation in a Moderate or Intense Low-Oxygen Dilution (MILD) Combustion Furnace".energy and fuels (2012).
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