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首页> 外文期刊>SAE International Journal of Fuels and Lubricants >Compositional Effects of Gasoline Fuels on Combustion, Performance and Emissions in Engine
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Compositional Effects of Gasoline Fuels on Combustion, Performance and Emissions in Engine

机译:汽油燃料对发动机燃烧,性能和排放的组成作用

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摘要

Commercial gasoline fuels are complex mixtures of numerous hydrocarbons. Their composition differs significantly owing to several factors, source of crude oil being one of them. Because of such inconsistency in composition, there are multiple gasoline fuel compositions with similar octane ratings. It is of interest to comparatively study such fuels with similar octane ratings and different composition, and thus dissimilar physical and chemical properties. Such an investigation is required to interpret differences in combustion behavior of gasoline fuels that show similar knock characteristics in a cooperative fuel research (CFR) engine, but may behave differently in direct injection spark ignition (DISI) engines or any other engine combustion modes. Two FACE (Fuels for Advanced Combustion Engines) gasolines, FACE F and FACE G with similar Research and Motor Octane Numbers but dissimilar physical properties were studied in a DISI engine under two sets of experimental conditions; the first set involved early fuel injection to allow sufficient time for fuel-air mixing hence permitting operation similar to homogenous DISI engines, while the second set consists of advance of spark timings to attain MBT (maximum brake torque) settings. These experimental conditions are repeated across different load points to observe the effect of increasing temperature and pressure on combustion and emission parameters. The differences in various engine-out parameters are discussed and interpreted in terms of physical and thermodynamic properties of the fuels.
机译:商业汽油燃料是许多碳氢化合物的复杂混合物。由于若干因素,原油是其中之一的原因,它们的构成显着不同。由于组合物的这种不一致,有多种具有相似辛烷值的汽油燃料组合物。使用相似的辛烷值等级和不同的组成,以及不同的物理和化学性质,对这种燃料进行了兴趣。这种调查是需要解释汽油燃料燃烧行为的差异,该燃料燃料的燃烧行为在合作燃料研究(CFR)发动机中显示出类似的爆震特性,但在直接喷射火花点火(DISI)发动机或任何其他发动机燃烧模式中可能表现不同。两个面(用于先进燃烧发动机的燃料)汽油,面部F和面部G具有类似的研究和电机辛烷值,但在两组实验条件下,在DISI发动机中研究了不同的物理性质;第一组涉及早期燃料喷射,以允许足够的时间进行燃料 - 空气混合,因此允许操作类似于均匀的DISI发动机,而第二组包括出火花定时的前进以获得MBT(最大制动扭矩)设置。这些实验条件在不同的负载点中重复,以观察增加温度和压力对燃烧和发射参数的影响。在燃料的物理和热力学性质方面讨论和解释了各种发动参数的差异。

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