Combustion Characteristics and NO Formation Characteristics Modeling in a Compression Ignition Engine Fuelled with Diesel Fuel and Biofuel

IF 1.5 Q3 ENGINEERING, CHEMICAL Journal of Combustion Pub Date : 2021-11-18 DOI:10.1155/2021/7111040
Jean Paul Gram Shou, M. Obounou, Rita Enoh Tchame, Mahamat Hassane Babikir, T. Kofané
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Abstract

Compression ignition engine modeling draws great attention due to its high efficiency. However, it is still very difficult to model compression ignition engine due to its complex combustion phenomena. In this work, we perform a theoretical study of steam injection being applied into a single-cylinder four-strokes direct-injection and naturally aspirated compression ignition engine running with diesel and biodiesel fuels in order to improve the performance and reduce NO emissions by using a two-zone thermodynamic combustion model. The results obtained from biodiesel fuel are compared with the ones of diesel fuel in terms of performance, adiabatic flame temperatures, and NO emissions. The steam injection method could decrease NO emissions and improve the engine performances. The results showed that the NO formation characteristics considerably decreased and the performance significantly increased with the steam injection method. The relative errors for computed nitric oxide concentration values of biodiesel fuel and diesel fuel in comparison to the measured ones are 2.8% and 1.6%, respectively. The experimental and theoretical results observed show the highly satisfactory coincidences.
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以柴油和生物燃料为燃料的压缩点火发动机的燃烧特性和NO形成特性建模
压缩点火发动机建模因其高效性而备受关注。然而,由于压缩点火发动机燃烧现象复杂,对其进行建模仍然非常困难。本文采用双区热力学燃烧模型,对使用柴油和生物柴油的单缸四冲程直喷自然吸气压缩点火发动机进行了喷汽理论研究,以提高发动机性能并减少NO排放。从性能、绝热火焰温度和NO排放等方面对生物柴油与普通柴油进行了比较。采用喷汽方式可以降低NO排放,提高发动机性能。结果表明:注汽方法显著降低了NO地层特征,提高了NO地层性能;计算得到的生物柴油和柴油的一氧化氮浓度值与实测值的相对误差分别为2.8%和1.6%。所观察到的实验和理论结果显示出高度满意的一致性。
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来源期刊
Journal of Combustion
Journal of Combustion ENGINEERING, CHEMICAL-
CiteScore
2.00
自引率
28.60%
发文量
8
审稿时长
20 weeks
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