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Effect of inlet temperature on combustion efficiency of lean H-2/air mixtures in a micro-combustor with wall cavities

机译:进气温度对带有壁腔的微型燃烧器中稀薄H-2 /空气混合物的燃烧效率的影响

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Micro-combustors with wall cavities can achieve a large flame blowout limit. However, the combustion efficiency is sharply decreased at high inlet velocities for relatively lean H-2/air mixtures (equivalence ratio, phi = 0.3-0.5) due to the occurrence of "flame tip opening phenomenon". In the present work, the effect of inlet mixture temperature (T-in) on flame tip opening and combustion efficiency was investigated. It is demonstrated that for phi = 0.5, flame tip opening is negligible even at T-in = 300 K, while for phi = 0.3 and 0.4, this phenomenon becomes serious. As a result, a great amount of fuel leaks out and the combustion efficiency is sharply decreased. Nevertheless, if the inlet temperature is increased by around 50-100 K for phi = 0.4 and 150-200 K for phi = 0.3, the flame tip opening phenomenon can be notably improved and the combustion efficiency is significantly increased. Theoretical analysis reveals that an appropriate increment in the inlet mixture temperature can bring about favorable effects on the effective Lewis number, flame stretch rate and combustion intensity. (C) 2016 Elsevier Ltd. All rights reserved.
机译:具有壁腔的微型燃烧器可以达到较大的火焰喷出极限。但是,由于出现“火焰尖端张开现象”,对于相对稀薄的H-2 /空气混合物(当量比,phi = 0.3-0.5),在高入口速度下燃烧效率急剧下降。在本工作中,研究了进气混合物温度(T-in)对火焰尖端打开和燃烧效率的影响。结果表明,对于phi = 0.5,即使在T-in = 300 K时,火焰尖端开度也可忽略不计,而对于phi = 0.3和0.4,这种现象变得严重。结果,大量的燃料泄漏并且燃烧效率急剧降低。然而,如果进气温度在phi = 0.4时增加约50-100 K,在phi = 0.3时增加150-200 K,则可以显着改善火焰尖端打开现象,并显着提高燃烧效率。理论分析表明,进气混合物温度的适当升高可以对有效路易斯数,火焰拉伸速率和燃烧强度产生有利影响。 (C)2016 Elsevier Ltd.保留所有权利。

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