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Efficiency analysis of varying EGR under PCI mode of combustion in a light duty diesel engine

机译:轻型柴油机在PCI燃烧模式下可变EGR的效率分析

摘要

The recent pollution norms have brought a strong emphasis on the reduction of diesel engine emissions. Low temperature combustion technology such as premixed compression ignition (PCI) has the capability to significantly and simultaneously reduce nitric oxides (NOx) and particulate matter (PM), thus meeting these specific pollution norms. There has been, however, observed loss in fuel conversion efficiency in some cases. This study analyzes how energy transfer and brake fuel conversion efficiency alter with (or are affected by) injection timings and exhaust gas recirculation (EGR) rate. The study is conducted for PCI combustion for four injection timings of 9?, 12?, 15? and 18? before top dead center (BTDC) and for four exhaust gas recirculation (EGR) rates of 39%, 40%, 41% and 42%. The data is collected from the experimental apparatus located in General Motors Collaborative Research Laboratory at the University of Michigan. The heat release is calculated to obtain various in-cylinder energy transfers. The brake fuel conversion efficiency decreases with an increase in EGR. The decrease in the brake fuel conversion efficiency is due to the decrease in work output. This decrease is due to an increase in the pumping work and an increase in friction and decrease in gross indicated work. The decrease in the combustion efficiency is because of the increased formation of unburnt products due to increased ignition delay caused by the application of EGR and decreasing air-fuel (A/F) ratio. A definite trend is not obtained for the contribution of heat transfer to the total energy distribution. However the total heat transfer decreases with retardation of injection timing because of decreasing combustion temperature. As the injection timing is retarded, the brake fuel conversion efficiency is found to decrease. This decrease is because of a decrease in net work output. This is because the time available for utilization of the energy released is less because of late combustion. The total heat transfer decreases with retardation of injection timing because of decreasing combustion temperature. The contribution of heat transfer to the total energy distribution decreases with increase in EGR.
机译:最近的污染标准已将重点放在减少柴油机排放上。诸如预混压缩点火(PCI)之类的低温燃烧技术具有显着同时还原一氧化氮(NOx)和颗粒物(PM)的能力,从而符合这些特定的污染标准。然而,在某些情况下已经观察到燃料转化效率的损失。这项研究分析了能量传递和制动燃料转换效率如何随喷射正时和排气再循环(EGR)率变化(或受其影响)。该研究是针对PCI燃烧进行的,分别为9?,12?,15?的四个喷射正时。和18?在上止点(BTDC)之前和四个排气再循环(EGR)率分别为39%,40%,41%和42%。数据是从位于密歇根大学通用汽车合作研究实验室的实验设备收集的。计算热量释放以获得各种缸内能量传递。制动燃料转换效率随着EGR的增加而降低。制动燃料转换效率的降低是由于功输出的降低。该下降是由于泵送功的增加以及摩擦的增加和总指示功的减少。燃烧效率的降低是由于未燃烧产物的形成增加,这是由于由于应用EGR导致点火延迟增加以及空燃比(A / F)降低而导致的。对于热传递对总能量分布的贡献,没有获得明确的趋势。然而,由于燃烧温度降低,总的热传递随着喷射正时的延迟而降低。随着喷射正时的延迟,发现制动燃料转换效率降低。该下降是由于净功输出的下降。这是因为由于燃烧较晚而可利用释放的能量的时间较少。由于燃烧温度降低,总热传递随着喷射正时的延迟而降低。传热对总能量分布的贡献随着EGR的增加而降低。

著录项

  • 作者

    Pillai Rahul Radhakrishna;

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  • 年度 2008
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  • 正文语种 en_US
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