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研究丁醇异构体对进气道喷射双燃料柴油发动机燃烧和排放的影响:一项实验研究。

Investigating the effect of butanol isomers on combustion and emissions in port injection dual fuel diesel engines: an experimental study.

作者信息

Kılınç Mehmet Ferruh, Öztürk Gökhan, Fırat Müjdat

机构信息

Support Services Directorate, Elazığ Municipality, Elazığ, Türkiye.

Department of Automotive Engineering, Faculty of Technology, Fırat University, Elazığ, Türkiye.

出版信息

PLoS One. 2025 Jun 18;20(6):e0326197. doi: 10.1371/journal.pone.0326197. eCollection 2025.

Abstract

The present study examines the effects of substituting alternative fuels for diesel fuel and employing a dual fuel approach on diesel engine combustion characteristics and emissions. Various butanol isomers, namely ıso-butanol, n-butanol, tert-butanol, and sec-butanol, were chosen as novelty alternative fuels. In dual fuel combustion strategy, diesel fuel was injected directly into the cylinder, while butanol isomers as a secondary fuel were introduced into the cylinder at the beginning of the intake period using a port injection technique. The tests were repeated for 15%, 30%, and 45% premixing ratios (Rp) of butanol isomers. This study presents detailed combustion parameters and pollutant emission findings produced in diesel engines employing a dual fuel strategy with butanol isomers. In general, an increase within in cylinder pressure and heat release rate was observed. Especially at a premixing ratio of 45%, an increase of 50% within heat release rate was observed. Use of all butanol isomers increased the ignition delay and shortened combustion duration. Brake thermal efficiency remained at acceptable levels, and ringing intensity was below the knock limit. In addition to an increase in CO and HC emissions, NOX emissions were also up at other premixing ratios but declined at 15%. High levels of decreased smoke opacity were recorded. Especially at a premixing ratio of 45% iso-butanol, a decrease up to 90% is remarkable. In conclusion, the combustion characteristics and pollutant emission results obtained from the experimental engine are discussed in detail according to the operating parameters. The obtained findings provide important information about the performance and emission profiles of alternative fuels and dual fuel systems and provide guidance for future research.

摘要

本研究考察了用替代燃料替代柴油以及采用双燃料方法对柴油发动机燃烧特性和排放的影响。选择了各种丁醇异构体,即异丁醇、正丁醇、叔丁醇和仲丁醇,作为新型替代燃料。在双燃料燃烧策略中,柴油直接喷入气缸,而丁醇异构体作为二次燃料在进气阶段开始时通过进气道喷射技术引入气缸。对丁醇异构体的15%、30%和45%预混比(Rp)重复进行试验。本研究展示了采用丁醇异构体双燃料策略的柴油发动机产生的详细燃烧参数和污染物排放结果。总体而言,观察到气缸压力和热释放率有所增加。特别是在45%的预混比下,热释放率增加了50%。所有丁醇异构体的使用都增加了点火延迟并缩短了燃烧持续时间。制动热效率保持在可接受水平,爆震强度低于爆震极限。除了一氧化碳和碳氢化合物排放增加外,在其他预混比下氮氧化物排放也有所上升,但在15%时有所下降。记录到高水平的烟度降低。特别是在45%异丁醇预混比下,降低幅度高达90%,非常显著。总之,根据运行参数详细讨论了从实验发动机获得的燃烧特性和污染物排放结果。所获得的研究结果为替代燃料和双燃料系统的性能和排放概况提供了重要信息,并为未来研究提供了指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82e6/12176238/1544842a767d/pone.0326197.g001.jpg

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