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Estimate Measurement of Soot Diameter and Volume Fraction Inside the Bowl of a Direct-Injection-Compression-Ignition Engine: Effect of the Exhaust Gas Recirculation

机译:直喷式压缩点火式发动机碗内烟灰直径和体积分数的估计测量:废气再循环的影响

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摘要

An original application of the Laser-Induced-Incandescence (LII) technique was set up to quantify soot particles inside the combustion chamber of an optically accessible Direct-Injection Diesel engine. Planar soot concentration and local particle diameter were measured for several Exhaust Gas Recirculation (EGR) rates. The impact of the injection timing on the soot evolution for the highest EGR rate was also studied. Based on the analysis of LII images it is shown that the planar distribution of soot becomes more and more uniform across the combustion chamber and globally the soot maximum more important with the EGR rates increase. High EGR rates, combined with a retarded start of injection may lead to lower soot production inside the combustion chamber. Comparison between exhaust and in-cylinder soot concentration highlights the effect of post-combustion oxidation on the particle-emissions amount.
机译:建立了激光诱导白炽灯(LII)技术的原始应用程序,以量化光学可访问的直喷式柴油机燃烧室内部的烟尘颗粒。测量了几种废气再循环(EGR)速率的平面烟灰浓度和局部粒径。还研究了喷射时间对最高EGR率对烟灰的影响。基于对LII图像的分析表明,烟尘的平面分布在整个燃烧室变得越来越均匀,并且随着EGR率的增加,烟尘的最大值在全球范围内变得越来越重要。高EGR率,加上喷射开始延迟,可能会导致燃烧室内的烟灰生成降低。排气和缸内烟灰浓度之间的比较突出了燃烧后氧化对颗粒物排放量的影响。

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