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Full bore imaging of combustion and quantitative AFR PLIF with a multi-component fuel and co-evaporating tracers

机译:具有多组分燃料和共蒸发示踪剂的燃烧和定量AFR PLIF的全钻成像

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A technique has been developed for full bore imaging, and a high speed video camera used to obtain images that have been processed for soot temperature and loading, and flame growth. The soot measurements have been made with a colour ratio technique that avoids the need for an in-situ absolute radiation calibration. Instead, the spectral response of the camera has to be determined for each of the red, green and blue channels. Planar Laser-Induced Fluorescence (PLIF) has been extensively used for visualizing species of combustion and reacting flows. However, the relationship between PLIF signal strength and species concentration is complicated by other dependencies, so careful calibration is essential. In order to study the effects of evaporation of a multi-component fuel in an IC engine, a gasoline-like component fuel has been devised which has three components of low, medium and high-volatility. Each component is made from two non-fluorescing constituents chosen so that the component (as a whole) will co-evaporate with one of three selected tracers: namely acetone, toluene or 1,2,4-trimethylbenzene (TMB). Calibration results are presented along with fuel concentration distributions derived from the PLIF images that have been analyzed on a cycle-by-cycle basis.
机译:已经开发了一种用于全钻成像的技术,以及用于获得已经处理的图像以进行烟灰温度和装载的图像,以及火焰生长的高速摄像机。已经采用色度比技术进行了烟灰测量,避免了对原位绝对辐射校准的需要。相反,必须针对每个红色,绿色和蓝色通道确定相机的光谱响应。平面激光诱导的荧光(PLIF)广泛用于可视化燃烧物种和反应流。然而,PLIF信号强度和物种浓度之间的关系对其他依赖性复杂化,因此仔细校准是必不可少的。为了研究IC发动机中多组分燃料蒸发的影响,已经设计了一种汽油状部件燃料,其具有低,中等和高挥发性的三种组分。每个组分由选择的两个非荧光成分制成,使得组分(整体)与三种选定的示踪剂中的一种共蒸发:即丙酮,甲苯或1,2,4-三甲基苯(TMB)。校准结果以及源自从逐个循环的基础上分析的PLIF图像的燃料浓度分布。

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