基于相同总低热值的预混乙醇比例的燃烧阶段对反应控制压燃式发动机废气排放的形成和氧化的影响

Fire Pub Date : 2024-07-19 DOI:10.3390/fire7070258
S. Min, Hyunkyu Suh
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引用次数: 0

摘要

压燃式发动机利用喷入气缸的燃料的自燃特性产生动力。虽然它的燃油效率高,但会排放大量废气,如 NOX 和 PM。因此,目前有很多研究都在利用这方面的应用技术来减少废气排放,如 PCCI、HCCI 等。然而,这些方法仍会排放大量废气。结合了火花点火法和压缩点火法的 RCCI 方法备受关注。因此,本研究的目的是通过改变初始空气成分,数值研究基于相同缸内总热值的预混乙醇比例的燃烧阶段对 RCCI 发动机废气排放形成和氧化的影响。基于相同的缸内总低热值,预混乙醇比例的热值从 0% 到 40% 不等,步长为 10%。假设通过预混室进入气缸的乙醇被蒸发,气缸内的初始空气成分被改变并设定。结果表明,当基于相同总低热值的预混比例增加时,随着启动点火时间的提前,进入缝隙容积的燃料量减少,从而增加了气缸压力峰值。此外,由于乙醇的蒸发潜热使气缸温度较低,点火延迟时间也较长,从而减少了压缩损失,因此 IMEP 值提高了。富当量比在气缸内的分布较窄,导致气缸温度降低,从而减少了 NO 的形成量。在缸内总低热值相同的基础上,ISCO 值随着预混乙醇比率的增加而增加,这是因为柴油燃烧乙醇的火焰传播效果不佳,而且由于乙醇的蒸发潜热导致气缸温度较低,燃烧形成的 CO 被缓慢氧化。根据这些结果,判断出了同时减少废气排放和改善燃烧性能的最佳工作条件,即开始点火时间为 BTDC 23 度,基于相同的缸内总低热值的预混乙醇比率为 40%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effect of Combustion Phase According to the Premixed Ethanol Ratio Based on the Same Total Lower Heating Value on the Formation and Oxidation of Exhaust Emissions in a Reactivity-Controlled Compression Ignition Engine
A compression ignition engine generates power by using the auto-ignition characteristics of fuel injected into the cylinder. Although it has high fuel efficiency, it discharges a lot of exhaust emissions such as NOX and PM. Therefore, there is much ongoing research aiming to reduce the exhaust emissions by using the technologies applied in this regard, such as PCCI, HCCI, etc. However, these methods still discharge large exhaust emissions. The RCCI method, which combines the spark ignition method and compression ignition method, is attracting attention. So, in this work, the objective of this study is to numerically investigate the effect of combustion phase according to the premixed ethanol ratio based on the same total heating value in-cylinder by changing the initial air composition on the formation and oxidation of exhaust emissions in the RCCI engine. The heating value of the premixed ethanol ratio varied from 0% to 40% based on the same total lower heating value in-cylinder in steps of 10%. It was assumed that the ethanol introduced into the cylinder through the premixing chamber was evaporated, and the initial air composition in the cylinder was changed and set. It was revealed that when the premixed ratio based on the same total lower heating value was increased, the introduced fuel amount into the crevice volume with advancing the start of energizing timing was decreased, which increased the peak cylinder pressure. In addition, the ignition delay was also longer due to the low cylinder temperature by the evaporation latent heat of the ethanol, which reduced the compression loss, so the IMEP value was increased. The rich equivalence ratio had a narrow distribution in the cylinder, which caused a reduction in cylinder temperature, so the NO formation amount was reduced. The ISCO value increased the increase in premixed ethanol ratio based on the same total lower heating value in-cylinder because the flame propagation of ethanol by combustion of diesel did not work well, and the CO formed by combustion was slowly oxidized due to the cylinder’s low temperature as a result of the evaporation latent heat of ethanol. From these results, the optimal operating conditions for simultaneously reducing the exhaust emissions and improving the combustion performance were judged such that the start of energizing timing was BTDC 23 deg, and the premixed ethanol ratio based on the same total lower heating value in-cylinder was 40%.
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