首页> 外文会议>SAE International Powertrains, Fuels and Lubricants Meeting >PLII-LEM and OH* Chemiluminescence Study on Soot Formation in Spray Combustion of PODEn-Diesel Blend Fuels in a Constant Volume Vessel
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PLII-LEM and OH* Chemiluminescence Study on Soot Formation in Spray Combustion of PODEn-Diesel Blend Fuels in a Constant Volume Vessel

机译:Poden-Diesel混合物在恒定容器中喷雾燃烧中烟灰形成的PLII-LEM和OH *化学发光研究

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Polyoxymethylene dimethyl ethers (PODEn) are promising alternative fuel candidates for diesel engines because they present advantages in soot reduction. This study uses a PODEn mixture (contains PODE3-6) from mass production to provide oxygen component in blend fuels. The spray combustion of PODEn-diesel bend fuels in a constant volume vessel was studied using high speed imaging, PLII-LEM and OH* chemiluminescence. Fuels of several blend ratios are compared with pure diesel. Flame luminance data show a near linear decrease tendency with the blend ratio increasing. The OH* images reveal that the ignition positions of all the cases have small differences, which indicates that using a low PODEn blend ratio of no more than 30% does not need significant adjustment in engine combustion control strategies. It is found that 30% PODEn blended with diesel (P30) can effectively reduce the total soot by approximately 68% in comparison with pure diesel. The profile of the soot distribution of the P20 and P30 cases are different to that of diesel because the high oxygen contents in PODEn result in significant differences in soot formation and the oxidization process. The statistics results of the soot distribution indicate that the soot reduction effect of PODEn occurs not only because the high oxygen contents of PODEn promote oxidization, but also related to the absence of a C-C bond in the molecule which suppresses the generation tendency of soot precursors.
机译:聚甲醛二甲基醚(Poden)是柴油发动机的替代燃料候选者,因为它们在烟灰降低方面存在优势。该研究使用来自批量生产的Poden混合物(含有PODE3-6),以在共混燃料中提供氧组分。使用高速成像,PLII-LEM和OH *化学发光研究了Poden-Diesel弯曲燃料的喷涂燃烧。将几种混合比的燃料与纯柴油进行比较。火焰亮度数据显示近线线性降低倾向,增合比增加。 OH *图像表明,所有情况的点火位置都具有很小的差异,这表明使用不超过30%的低荚膜混合比不需要显着的发动机燃烧控制策略调整。结果发现,与柴油(P30)混合的30%荚膜可以通过纯柴油的比较,有效地将总烟灰减少约68%。 P20和P30壳体的烟灰分布的轮廓与柴油的突出物不同,因为Poden中的高氧含量导致烟灰形成和氧化过程的显着差异。烟灰分布的统计结果表明,荚豆的烟灰降低效应不仅是因为促进氧化的高氧含量,还与抑制烟灰前体的产生趋势的分子中的C-C键的不存在相关。

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