Storch Michael, Lind Susanne, Will Stefan, Zigan Lars
Appl Opt. 2016 Oct 20;55(30):8532-8540. doi: 10.1364/AO.55.008532.
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.
在这项工作中,燃料示踪剂的平面激光诱导荧光被用于分析直喷火花点火(DISI)发动机中各种乙醇/异辛烷混合燃料的混合气形成情况。示踪剂三乙胺(TEA)被添加到纯异辛烷、乙醇以及它们的E20和E85混合燃料中,用于测量燃料/空气比。一般来说,乙醇混合会强烈影响混合气形成过程,这是由与异辛烷相比影响乙醇蒸发过程的特定燃料物理特性所导致的。由于燃料与示踪剂荧光之间可能存在相互作用,因此在比色皿中、在恒定条件下的校准池中以及在光学可视的内燃机中于晚喷射时刻对不同燃料混合物的TEA荧光进行了研究。研究发现,乙醇混合会强烈影响液相中TEA的荧光强度,这可以通过示踪剂与乙醇分子之间的相互作用来解释。然而,在气相中,对于不同乙醇燃料混合物而言,对燃料/空气比进行定量是可行的,这在一台DISI发动机中得到了证明。在分层充气条件下,发动机测试结果表明,大量乙醇对混合气形成过程有显著影响,与异辛烷相比会导致混合气更稀。