首页> 外文会议>SAE International Powertrains, Fuels Lubricants Meeting >GEM Ternary Blends of Gasoline, Ethanol and Methanol: An Initial Investigation into Fuel Spray and Combustion Characteristics in a Direct-Injected Spark-Ignition Optical Engine Using Mie Imaging
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GEM Ternary Blends of Gasoline, Ethanol and Methanol: An Initial Investigation into Fuel Spray and Combustion Characteristics in a Direct-Injected Spark-Ignition Optical Engine Using Mie Imaging

机译:汽油,乙醇和甲醇的Gem三元融合:使用MIE成像的直接注入的火花点火光学发动机中的燃料喷雾和燃烧特性的初步研究

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Five different fuels, including gasoline, commercial E85, pure methanol and two mixtures of gasoline, ethanol and methanol, (GEM), configured to a target stoichiometric air fuel ratio have been investigated in a fully-optically-accessed engine. The work investigated effects of injection duration, and performed spray imaging, thermodynamic analysis of the combustion and OH imaging, for two fixed engine conditions of 2.7 and 3.7 bar NMEP at 2000 rpm. The engine was operated with constant ignition timing for all fuels and both loads. One of the most important results from this study was the suitability of a single type of injector to handle all the fuels tested. There were differences observed in the spray morphology between the fuels, due to the different physical properties of the fuels. The energy utilisation measured in this study showed differences of up to 14% for the different GEM fuels whereas an earlier in-vehicle study had showed only 2 to 3%. However, there was no information about any changes imposed by the engine management system for the earlier in-vehicle study, and this work was performed without a dynamometer (load being set by operating the engine at a fixed valve timing and intake depression as per earlier work using the equipment). The combustion analysis gave some interesting results when the OH images were compared to the rate of heat release. Here, E85 showed a consistently faster burn rate to that of gasoline, whereas the combustion images appeared to show the opposite. A short section on future work details further investigations that are required to explain some of the contradictory results found in the present work.
机译:已经研究了配置为靶向化学计量空燃比的五种不同的燃料,包括汽油,商业E85,纯甲醇和两种汽油,乙醇和甲醇,(宝石)。作品调查了注射持续时间的影响,并进行了喷射成像,燃烧和oh成像的热力学分析,两个固定发动机条件为2.7和3.7巴的2000 rpm。发动机以恒定点火正时操作,所有燃料和两个负载。本研究中最重要的结果之一是单一类型的喷射器来处理所测试的所有燃料的适用性。由于燃料的不同物质,燃料之间的喷雾形态观察到差异。在本研究中测量的能量利用率显示出不同的宝石燃料的差异高达14%,而早期的车载研究仅显示2%至3%。但是,没有关于发动机管理系统对较早的车载研究产生的任何变化的信息,并且在没有测功机的情况下进行这项工作(根据先前通过在固定的阀门定时和进气凹陷上操作发动机而设定的负载使用设备的工作)。当OH图像与热释放速率进行比较时,燃烧分析给出了一些有趣的结果。这里,E85向汽油的速度呈现出始终如一的燃烧速率,而燃烧图像似乎表现出相反的情况。关于未来工作细节的简短部分进一步调查,以解释本工作中发现的一些矛盾的结果。

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