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CHARACTERIZATION OF FUEL COMPOSITION AND ALTITUDE IMPACT ON GASEOUS AND PARTICLE EMISSIONS FROM A TURBOJET ENGINE

机译:涡轮喷气发动机的汽油和颗粒物排放的燃料组成和海拔变化特征

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The effects of altitude and fuel composition on gaseous and particle emissions from a turbojet engine were investigated as part of the National Jet Fuels Combustion Program (NJFCP) effort. Two conventional petroleum based jet fuels (a "nominal" and a "worst-case" jet fuel) and two test fuels with unique characteristics were selected for this study. The "worst-case" conventional jet fuel with high flash point and viscosity resulted in reduced combustion efficiency supported by the reduced CO_2 emissions and corresponding increased CO and THC emissions. In addition, increased particle number (PN), particle mass (PM), and black carbon (BC) emissions were observed. Operating the engine on a bimodal fuel, composed of heavily branched C_(12) and C_(16) iso-paraffinic hydrocarbons with an extremely low cetane number did not significantly impact the engine performance or gaseous emissions but significantly reduced PN, PM, and BC emissions when compared to other fuels. The higher aromatic content and lower hydrogen content in the C-5 fuel were observed to increase PN, PM, and BC emissions. It is also evident that the type of aromatic hydrocarbons has a large impact on BC emissions. Reduction in combustion efficiency resulted in reduced CO_2 emissions and increased CO and THC emissions from this engine with increasing altitudes. PN emissions were moderately influenced by altitude but PM and BC emissions were significantly reduced with increasing altitude. The reduced BC emissions with increasing altitude could be a result of reduced combustion temperature which lowered the rate of pyrolysis for BC formation, which is supported by the NO_x reduction trend.
机译:作为国家喷气燃料燃烧计划(NJFCP)的一部分,研究了海拔和燃料成分对涡轮喷气发动机气体和颗粒物排放的影响。本研究选择了两种常规的石油基喷气燃料(“标称”和“最坏情况”喷气燃料)和两种具有独特特性的试验燃料。具有高闪点和高粘度的“最坏情况”常规喷气燃料导致燃烧效率下降,这是由于减少了CO_2排放量以及相应增加的CO和THC排放量所致。此外,观察到增加的颗粒数(PN),颗粒质量(PM)和黑碳(BC)排放。使用十六烷值极低的重链C_(12)和C_(16)异链烷烃组成的双峰燃料运行发动机不会显着影响发动机性能或气体排放,但可显着降低PN,PM和BC与其他燃料相比的排放量。观察到C-5燃料中较高的芳族含量和较低的氢含量会增加PN,PM和BC的排放。同样明显的是,芳烃的类型对不列颠哥伦比亚省的排放有很大的影响。燃烧效率的降低导致该发动机随高度的升高而减少了CO_2排放,并增加了CO和THC排放。 PN排放受海拔的影响中等,但PM和BC排放随海拔的增加而显着降低。随海拔升高而降低的BC排放量可能是由于燃烧温度降低而降低了BC形成的热解速率,这由NO_x还原趋势所支持。

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