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Role of Late Soot Oxidation for Low Emission Combustion in a Diffusion-Controlled, High-EGR, Heavy-Duty Diesel Engine

机译:在扩散控制,高EGR,重型柴油发动机中,晚烟灰氧化在低排放燃烧中的作用

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Soot formation and oxidation are complex and competing processes during diesel combustion. The balance between the two processes and their history determines engine-out soot values. Besides the efforts to lower soot formation with measures to influence the flame lift-off distance for example or to use HCCI-combustion, enhancement of late soot oxidation is of equal importance for low-λ diffusion-controlled low emissions combustion with EGR. The purpose of this study is to investigate soot oxidation in a heavy-duty diesel engine by statistical analysis of engine data and in-cylinder endoscopic high-speed photography together with CFD simulations with a main focus on large-scale in-cylinder gas motion. Results from CFD simulations using a detailed soot model were used to reveal details about the soot oxidation. A particular objective of the present study was to investigate the importance of enhancing soot oxidation after End of Injection (EOI) when temperature and NO_x formation rapidly decreases. Geometrical measures to control flame propagation and different flame interactions were investigated. Such measures contribute to conserve available kinetic energy until late in the combustion period in an efficient way. Based on this combustion strategy it is possible to reach near zero engine-out soot emissions.
机译:烟灰形成和氧化是柴油燃烧过程中的复杂和竞争过程。两种进程和其历史之间的平衡确定发动机出烟灰值。除了用措施降低烟雾形成的努力来影响火焰升降距离,或者使用HCCI燃烧,晚期烟灰氧化的增强具有与EGR的低λ扩散控制的低排放燃烧相同的重要性。本研究的目的是通过发动机数据和缸内内窥镜高速摄影的统计分析以及CFD模拟的统计分析来研究重型柴油机中的烟灰氧化,主要侧重于大规模的气缸气动。使用详细烟灰模型的CFD模拟结果用于揭示有关烟灰氧化的细节。本研究的特定目的是研究注射后(EOI)在温度和NO_X形成迅速下降时增强烟灰氧化的重要性。研究了控制火焰传播和不同火焰相互作用的几何措施。这些措施有助于节约可用的动能,直到燃烧期晚期以有效的方式。基于这种燃烧策略,可以达到零发动机烟灰排放附近。

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