材料科学
汽油
辛烷值
乙醇
激光诱导荧光
点火系统
燃烧
火花点火发动机
分析化学(期刊)
辛烷值
液体燃料
反应杯
乙醇燃料
荧光
色谱法
化学
热力学
光学
有机化学
物理
作者
Michael Storch,Susanne Lind,Stefan Will,Lars Zigan
出处
期刊:Applied optics
[The Optical Society]
日期:2016-10-17
卷期号:55 (30): 8532-8532
被引量:8
摘要
In this work, the planar laser-induced fluorescence of a fuel tracer is applied for the analysis of mixture formation for various ethanol/iso-octane blends in a direct-injection spark-ignition (DISI) engine. The tracer triethylamine (TEA) was added to pure iso-octane and ethanol as well as to their blends E20 and E85 for the measurement of the fuel/air ratio. In general, ethanol blending strongly affects the mixture formation process, which is caused by specific physical fuel properties influencing the evaporation process of ethanol in comparison to iso-octane. As interactions of the fuel and tracer fluorescence appear possible, TEA fluorescence was studied for different fuel blends in a cuvette, in a calibration cell under constant conditions, and in an optically accessible internal combustion engine at late injection timing. It was found that ethanol blending strongly affects the fluorescence intensity of TEA in the liquid phase, which can be explained by the interaction of the tracer and ethanol molecules. However, in the gas phase a quantification of the fuel/air ratio is possible for different ethanol fuel blends, which is demonstrated in a DISI engine. Under stratified charge conditions the engine results showed a significant impact of a high amount of ethanol on the mixture formation process, leading to a leaner mixture in comparison to iso-octane.
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