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CFD Evaluation of Effects of Split Injection on Combustion and Emissions in a DI Diesel Engine

机译:CFD评估分流喷射对DI柴油机燃烧和排放的影响

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Effects of split injection with different EGR rate on combustion process and pollutant emissions in a DI Diesel engine have been evaluated with CFD modeling. The model was validated with experimental data achieved from a Caterpillar 3401 DI diesel engine and 3D CFD simulation was carried out from intake valve closing (IVC) to exhaust valve opening (EVO). Totally 12 different injection strategies for which two injection pulses with different fuel amount for each pulse (up to 30% for the second pulse) and different separation between two pulses (up to 30° CA) were evaluated. Results show that adequate injection separation and enough fuel amount of the second pulse could form a separate 2nd stage of heat release which could reduce the peak combustion temperature and improve the oxidation of soot formed in the first heat release stage. This suggests, by optimizing split injection configurations accompanied with appropriate EGR rate, both NOx and soot emissions can be controlled effectively.
机译:已使用CFD模型评估了不同EGR率的分流喷射对DI柴油机燃烧过程和污染物排放的影响。该模型已使用Caterpillar 3401 DI柴油发动机获得的实验数据进行了验证,并且从进气门关闭(IVC)到排气门打开(EVO)进行了3D CFD仿真。总共评估了12种不同的喷射策略,其中评估了两个喷射脉冲,每个脉冲的燃油量不同(第二个脉冲最高30%),两个脉冲之间的间隔不同(最大30°CA)。结果表明,足够的喷射分离和第二脉冲的足够燃料量可以形成单独的第二级放热,这可以降低峰值燃烧温度并改善在第一级放热中形成的烟灰的氧化。这表明,通过优化分流喷射配置以及适当的EGR率,可以有效地控制NOx和烟尘排放。

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