Effect of injection pressure on soot formation/oxidation characteristics using a two-color photometric method in a compression-ignition engine fueled with biodiesel blend (B20)
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Effect of injection pressure on soot formation/oxidation characteristics using a two-color photometric method in a compression-ignition engine fueled with biodiesel blend (B20)

机译:注射压力对烟灰地层/氧化特性的影响使用双彩色光度法用生物柴油混合物(B20)燃料的压缩点火发动机

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Highlights?Spatial temperature and soot density in the combustion chamber using endoscope.?Development of flame and soot emissions for 20% vol. biodiesel blend.?Two-color photometric method evaluated temperature and soot intensity in images.?Apparent combustion and emissions features in biodiesel blend and diesel fuels.AbstractBiofuels are an alternative to petroleum fuels in transportation. Among various biofuels, biodiesel has been mixed with diesel fuel for use in compression ignition (CI) engines. Many countries legislate that standard diesel fuels contain a certain amount of biodiesel to reduce exhaust emissions. An increase in biodiesel content to a 20% volumetric ratio (B20) requires only minor modification to existing vehicle systems. Since discrepancies in fuel properties between B20 and conventional diesel fuel, much research has been performed on B20 combustion and emissions for the implementation of vehicles. The present study investigated spatial B20 combustion and soot emission processes in an optical CI engine under various injection pressure conditions. Volumetric 20% of soybean biodiesel added to diesel fuel and both blend fuel and conventional diesel fuel were used as test fuels. Apparent combustion and emissions were observed with respect to auto-ignition, brake power, and thermal efficiency. In addition, visualization system permitted a profound analysis of the spatial combustion flame and soot propagation. A two-color photometric method extracted quantitative soot density from the captured combustion images, which allowed to study the soot formation and oxidation processes. Although soot emissions decreased significantly out of the engine, the variations in the soot formation and oxidation processes in the combustion chamber were remarkable. Compared with neat diesel flame B20 fuel produced higher flame temperature over all injection pressure conditions. While B20 flame temperature was increased, soot emission of B20 fuel was exhausted with higher concentrations. Under a low load and high speed condition, B20 emissions revealed different results from those of general bio-blends with high thermal efficiency regardless of the injection pressure.]]>
机译:<![cdata [ 亮点 使用内窥镜燃烧室中的空间温度和烟灰密度。 火焰和烟火的开发20%卷。生物柴油混合。 双色光度法评估图像中的温度和烟灰强度。 生物柴油混合物和柴油燃料中的表观燃烧和排放功能。 抽象 生物燃料交通工具中的石油燃料替代品。在各种生物燃料中,生物柴油已与柴油燃料混合用于压缩点火(CI)发动机。许多国家立法说,标准柴油燃料含有一定数量的生物柴油,以减少废气排放。生物柴油含量增加到20%容积比(B20)只需要对现有车辆系统进行微小的修改。由于B20和常规柴油燃料之间的燃料特性差异,因此在B20燃烧和排放的实施中进行了许多研究。本研究在各种喷射压力条件下研究了光学CI发动机中的空间B20燃烧和烟灰发射过程。将20%的大豆生物柴油添加到柴油燃料和混合燃料和常规柴油燃料中用作试验燃料。相对于自动点火,制动力和热效率观察表观燃烧和排放。此外,可视化系统允许对空间燃烧火焰和烟灰繁殖的深刻分析。一种双彩光测量方法从捕获的燃烧图像中提取定量烟灰密度,其允许研究烟灰形成和氧化过程。尽管发动机的烟灰排放显着降低,但燃烧室中的烟灰地层和氧化过程的变化显着。与整齐的柴油燃烧B20相比,燃料在所有注射压力条件下产生较高的火焰温度。虽然B20火焰温度升高,但B20燃料的烟灰排放以较高的浓度耗尽。在低负荷和高速条件下,B20排放揭示了具有高热效率的一般生物混合物的结果,而不管注射压力如何。 ]]>

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