首页> 外文期刊>Journal of Mechanical Science and Technology >Flame characteristics and NO emission in methane/air-air counterflow premixed flames with applying FIR and FGR
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Flame characteristics and NO emission in methane/air-air counterflow premixed flames with applying FIR and FGR

机译:应用FOR和FGR在甲烷/空气-空气逆流预混火焰中的火焰特性和NO排放

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Numerical study was conducted to grasp flame characteristics and NO emission behaviors in CH4/air-air premixed counterflow flames with applying Fuel induced recirculation (FIR) and Flue gas recirculation (FGR) with CO2 and H2O by varying global strain rate and the ratios of FIR and FGR. Chemical effects of additional CO2 and H2O via FIR and FGR were analyzed through comparing flame characteristics and NO behaviors from real species (CO2 and H2O) with those from their artificial species (XCO2 and XH2O) which have the same thermochemical, radiative, and transport properties to those for the real species. The results showed that flame temperature and NO emission with FIR varied much more sensitively than that with FGR. Those varied little via FIR with CO2 and H2O as well as XCO2 and XH2O. However, those varied complicatedly by chemical effects of added CO2 and H2O via FGR. In particular, there is a critical ratio of FGR below which NO emission index can be larger than those without applying FGR. Detailed analyses for them were made and discussed.
机译:通过改变整体应变率和FIR的比例,通过对燃料诱导的再循环(FIR)和烟气再循环(FGR)与CO2和H2O的应用,进行了数值研究以掌握CH4 /空气-空气预混逆流火焰中的火焰特性和NO排放行为和森林遗传资源。通过比较来自真实物种(CO2和H2O)的火焰特性和NO行为与具有相同热化学,辐射和传输特性的人工物种(XCO2和XH2O)的火焰特性和NO行为,分析了通过FIR和FGR产生的其他CO2和H2O的化学效应。对于那些真正的物种。结果表明,FIR的火焰温度和NO排放的变化比FGR的更为敏感。通过FIR与CO2和H2O以及XCO2和XH2O的变化很小。但是,由于通过FGR添加的CO2和H2O的化学作用,这些变化非常复杂。特别是,存在FGR的临界比率,在该比率之下,NO排放指数可能会大于未应用FGR的排放指数。他们进行了详细的分析和讨论。

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