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An experimental investigation on combustion and engine performance and emissions of a methane-gasoline dual-fuel optical engine

机译:甲烷 - 汽油双燃料光学发动机燃烧和发动机性能和排放的实验研究

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The use of methane as supplement to liquid fuel is one of the solution proposed for the reduction of the internal combustion engine pollutant emissions. Its intrinsic properties as the high knocking resistance and the low carbon content makes methane the most promising clean fuel. The dual fuel combustion mode allows improving the methane combustion acting mainly on the methane slow burning velocity and allowing lean burn combustion mode. An experimental investigation was carried out to study the methane-gasoline dual fuel combustion. Methane was injected in combustion chamber (DI fuel) while gasoline was injected in the intake manifold (PFI fuel). The measurements were carried out in an optically accessible small single-cylinder four-stroke engine. It was equipped with the cylinder head of a commercial 250 cc motorcycles engine representative of the most popular two-wheel vehicles in Europe. UV-visible spectroscopy measurements were performed to analyze the combustion process with high spatial and temporal resolution. In particular, UV-visible spectroscopy allows detecting the chemical markers of combustion process such as the radicals OH* and CH*. The in-cylinder lambda spatial and temporal evolution was evaluated. The combustion evolution is characterized by means of a high speed cycle resolved camera. The exhaust emissions were characterized by means of gaseous analyzers. The measurements were performed under steady state conditions at different engine operating conditions.
机译:使用甲烷作为液体燃料的补充是用于减少内燃机污染物排放的溶液之一。其固有的性质作为高敲击性和低碳含量使甲烷成为最有前途的清洁燃料。双燃料燃烧模式允许改善主要在甲烷缓慢燃烧速度上作用的甲烷燃烧,并允许稀燃燃烧模式。进行了实验研究以研究甲烷 - 汽油双燃料燃烧。在燃烧室(DI燃料)中注射甲烷,同时在进气歧管(PFI燃料)中注入汽油。测量在光学访问的小单缸四冲程发动机中进行。它配备了商业250辆CC摩托车发动机的气缸头,代表欧洲最受欢迎的两轮车辆。进行UV可见光谱测量以分析具有高空间和时间分辨率的燃烧过程。特别地,UV可见光光谱允许检测燃烧过程的化学标记,例如基团OH *和CH *。评估缸内λλ空间和时间进化。燃烧进化的特征在于通过高速循环解决的相机的特征。废气排放以气态分析仪为特征。在不同发动机操作条件下在稳态条件下进行测量。

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