首页> 外文会议>SAE/KSAE International Powertrains, Fuels and Lubricants Meeting >Multi-Wavelength Spectroscopic Investigations of the Post-Injection Strategy Effect on the Fuel Vapor within the Exhaust Line of a Light Duty Diesel Engine Fuelled with B5 and B30
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Multi-Wavelength Spectroscopic Investigations of the Post-Injection Strategy Effect on the Fuel Vapor within the Exhaust Line of a Light Duty Diesel Engine Fuelled with B5 and B30

机译:用B5和B30加油的轻型柴油发动机排气管线内注射速度对燃料蒸汽的多波长光谱研究

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Optical diagnostic was applied to undiluted engine exhaust to supply a low cost and real time evaluation of the oil dilution tendency of selected fuels. Specifically, UV-visible-near IR extinction spectroscopy was applied in the exhaust line of a Euro 5 turbocharged, water cooled, DI diesel engine, equipped with a common rail injection system. The engine was fuelled with commercial B5 fuel and a B30 v/v blend of RME and ultra low sulfur diesel. The proposed experimental methodology allowed to identify the contribution to the multi-wavelength extinction of soot, fuel vapor, hydrocarbons and nitrogen oxide. Further, the evolution of each species for different post-injection interval settings was followed. On-line optical results were correlated with off-line liquid fuel absorption values. Moreover, spectroscopic measurements were linked to in-cylinder pressure related data and with HC and smoke exhaust emissions. The late post injection activation and fuel amount increase did not affect the energy release within the cylinder for either fuels. As a consequence, soot and NO_x exhaust emissions remained constant during the post-injection setting. The HC exhaust increase was correlated to post-injection amount and followed in the time by UV extinction signal. The blend B30 attained a lower UV signal that was related to higher oil dilution tendency of biofuel.
机译:将光学诊断应用于未稀释的发动机排气,以提供低成本和实时评估所选燃料的油稀释趋势。具体地,在欧元5欧元涡轮增压,水冷的DI柴油发动机的排气线中施加UV可见光近IR消光光谱,配备了共同的轨道喷射系统。发动机用商业B5燃料和RME和超低硫柴油的B30 V / V混合物燃料。所提出的实验方法允许识别对烟灰,燃料蒸气,烃和氮氧化物的多波长消光的贡献。此外,遵循每个物种对不同后注射间隔设置的演变。在线光学结果与离线液体燃料吸收值相关。此外,光谱测量与缸内压力相关数据和HC和烟气排放有关。晚期注射激活和燃料量增加不会影响燃料中的气缸内的能量释放。结果,在注射后设定期间,烟灰和NO_X废气排放仍然是恒定的。 HC排气增加与注射后量相关,并随时通过UV消光信号。混合物B30达到了与生物燃料更高的油稀释趋势有关的较低的UV信号。

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