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Laser Induced Fluorescence Detection of NO in the Combustion Chamber of an Optical GDI Engine with A-X(0,1) Excitation

机译:激光诱导光学GDI发动机燃烧室中烟雾的荧光检测,具有A-X(0,1)激发

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Planar Laser-Induced Fluorescence has been set up to study in-cylinder production of NO in a realistic optical GDI engine. The excitation in the A-X (0,1) band of NO around 236 nm has been used for the first time. This was possible by means of an optical parametric oscillator laser system. A very careful choice of the excitation wavelength has been made with the assistance of a spectral simulation code of NO and O{sub}2 molecules. The first tests inside the engine running in the early injection mode were performed. Global equivalence ratio was set to 0.9 and NO concentration in the exhaust was about 3200 ppm. Pressure traces were recorded and a combustion analysis was performed. Direct flame and fluorescence images were acquired at numerous crank angle degrees between 320 CAD and 500 CAD (TDC = 360CAD). Individual images depicted non- homogeneous NO distribution between 450 CAD and 500 CAD. Interference with oxygen seemed negligible whereas a strong absorption phenomenon was observed. Quantification possibilities were also discussed.
机译:平面激光诱导的荧光已经设置为在现实光学GDI发动机中研究缸内缸内生产。第一次使用A-X(0,1)频带的励磁,该频带不约236nm。这通过光学参数振荡器激光系统可以实现这一点。在NO和O {Sub} 2分子的光谱仿真码的帮助下,已经制定了非常仔细的激发波长选择。执行在早期注射模式下运行的发动机内的第一次测试。全局等效率设定为0.9,排气中没有浓度约为3200ppm。记录压力迹线并进行燃烧分析。在320 cad和500 cad(Tdc = 360cad)之间的许多曲柄角度下获得直接火焰和荧光图像。在450 CAD和500 CAD之间,在450 CAD和500 CAD之间描绘的单个图像。干扰氧气似乎可忽略不计,而观察到强烈的吸收现象。还讨论了量化可能性。

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