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首页> 外文期刊>Journal of propulsion and power >Flashback Resistance and Fuel-Air Mixing in Lean Premixed Hydrogen Combustion
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Flashback Resistance and Fuel-Air Mixing in Lean Premixed Hydrogen Combustion

机译:稀薄预混氢气燃烧中的耐反燃性和燃料-空气混合

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摘要

To prevent flame flashback in swirl-stabilized, lean premixed combustion, a nonswirling air jet is introduced on the central axis of the radial swirl generator. This axial injection of air alters the flowfield as required for flashback- resistant combustion of premixed hydrogen. This study evaluates the impact of axial injection on the isothermal flowfield in a water tunnel by particle image velocimetry. Atmospheric reacting tests with hydrogen for inlet temperatures up to 620 K and up to stoichiometric conditions show a substantial increase in flashback resistance for the burner setup with axial injection. To verify the increase in flashback resistance to not be achieved at the expense of increased NOx emissions, fuel-air mixing is evaluated in a water tunnel by planar laser-induced fluorescence of a fuel tracer. Even for high axial injection rates, the recorded unmixedness and NOx emissions are uncorrelated. This results in single-digit NOA. emissions below adiabatic flame temperatures of 2000 K. Consequently, axial injection significantly extends the operational range of the combustor without increasing the NO. emissions.
机译:为了防止在稳定涡流,稀薄的预混燃烧中发生火焰反冲,在径向涡流发生器的中心轴上引入了非涡流式空气射流。空气的这种轴向注入根据预混合氢的耐回火燃烧的需要改变了流场。本研究通过粒子图像测速技术评估了轴向注入对水隧道等温流场的影响。进气温度高达620 K且达到化学计量条件下,与氢气进行的大气反应测试表明,采用轴向喷射的燃烧器装置的耐回火性大大提高。为了验证不能以增加的NOx排放为代价实现耐反燃性的提高,通过平面激光诱导的燃料示踪剂荧光在水隧道中评估了燃料-空气混合。即使对于高轴向喷射速率,所记录的不混合度和NOx排放也不相关。这将导致单位数字NOA。绝热火焰温度低于2000 K时,气体排放量增加。因此,轴向喷射大大扩展了燃烧室的工作范围,而不会增加NO。排放。

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