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首页> 外文期刊>International journal of sustainable engineering >Fuel efficiency enhancement of modified diesel engine operated in dual fuel mode using renewable and sustainable fuels
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Fuel efficiency enhancement of modified diesel engine operated in dual fuel mode using renewable and sustainable fuels

机译:使用可再生和可持续燃料以双燃料模式运行的改进型柴油发动机的燃油效率增强

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Renewable and sustainable fuels for diesel engine applications provide energy protection, overseas exchange saving and address atmospheric and socio-economic concerns. This study presents the investigational work carried out on a single cylinder, four-stroke, direct injection diesel engine operated in dual fuel (DF) mode using renewable and sustainable fuels. In the first phase, a Y-shaped mixing chamber or venture was developed with varied angle facility for gas entry at 30°, 45° and 60°, respectively, to enable homogeneous air and gas mixing. Further effect of different gas and air mixture entry on the DF engine performance was studied. In the next phase of the work, hydrogen flow rate influence on the combustion and emission characteristics of a compression ignition (CI) engine operated in DF mode using diesel, neem oil methyl ester (NeOME) and producer gas has been investigated. During experimentation, hydrogen was mixed in different proportions varied from 3 to 12 l/min (Ipm) in step of 3 Ipm along with air-producer gas and the mixtures were directly inducted into engine cylinder during suction stroke. Experimental investigation showed that 45° Y-shaped mixing chamber resulted in improved performance with acceptable emission levels. Further, it is observed that investigation showed that at maximum operating conditions and hydrogen flow rate of 9 Ipm, Diesel-producer gas and NeOME-producer gas combination showed increased thermal efficiency by 13.2% and 3.8%, respectively, compared to the DF operation without hydrogen addition. Further, it is noticed that hydrogen-enriched producer gas lowers the power derating by 5-10% and increases nitric oxide (NO_x) emissions. However, increased hydrogen addition beyond the 12 Ipm leads to sever knocking.
机译:用于柴油发动机的可再生和可持续燃料可提供能源保护,节省海外交易并解决大气和社会经济问题。这项研究介绍了在采用可再生和可持续燃料的双燃料(DF)模式下运行的单缸,四冲程,直喷柴油发动机上进行的研究工作。在第一阶段,开发了具有不同角度设施的Y形混合室或合资企业,分别用于30°,45°和60°的气体进入,以实现均匀的空气和气体混合。研究了不同的气体和空气混合物进入对DF发动机性能的进一步影响。在下一阶段的工作中,研究了氢气流速对使用柴油,印度em树油甲酯(NeOME)和生产气以DF模式运行的压燃(CI)发动机的燃烧和排放特性的影响。在实验过程中,氢气以3 Ipm的步长与3至12 l / min(Ipm)的不同比例混合在一起,并与空气产生器气体混合,并且在吸气冲程中将混合物直接引入发动机气缸。实验研究表明,45°Y形混合室可改善性能,并具有可接受的排放水平。此外,观察到的调查显示,与没有DF运行的DF运行相比,在最大运行条件和9 Ipm的氢气流量下,柴油生产的气体和NeOME生产的气体组合显示出的热效率分别提高了13.2%和3.8%。加氢。此外,注意到,富氢的生产气将功率降额降低了5-10%,并增加了一氧化氮(NO_x)的排放。但是,超过12 Ipm的氢气添加量增加会导致严重爆震。

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