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Performance and Emission Characteristics of a MPI Engine Fueled with Iso-Butanol/Gasoline Blends

机译:用异丁醇/汽油共混物燃料的MPI发动机的性能和排放特性

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A numerical and experimental study on performance and emission characteristics of four-stroke, four-cylinder Multi Point Injection (MPI) engine operating on iso-butanol/gasoline blends was carried out. The study aims at extending the widely used Wiebe function to combustion modeling of alternate fuels. Quasi one-dimensional simulation and experiments were carried out for different blends of iso-butanol and gasoline (0% (pure gasoline), 10% (IB10), 20% (IB20), 30% (IB30), by volume of iso-butanol) at wide open throttle (WOT) condition for five engine speeds in the range of 2000 to 4000 rpm. The computational and experimental results complement each other validating the proposed extension. BSFC of the blends initially drops for IB10 and later rises with increase in concentration of iso-butanol. Compared to gasoline, the blends lead to considerable decrease in the amount of unburned hydrocarbons (HC) and no change of carbon monoxide (CO). However, there is considerable increase in the amount of oxides of nitrogen (NO_x).
机译:进行了四冲程性能和排放特性的数值和实验研究,进行了在异丁醇/汽油共混物上运行的四缸多点注射(MPI)发动机。该研究旨在扩展广泛使用的Wiebe功能以燃烧交替燃料的燃烧建模。对异丁醇和汽油的不同共混物(0%(纯汽油),10%(Ib10),20%(Ib20),30%(Ib30),按体积,按体积的,对四维模拟和实验进行了一维模拟和实验。丁醇)在宽开放的节流阀(WOT)条件下为5个发动机速度,范围为2000至4000rpm。计算和实验结果互相补充验证所提出的延伸。混合物的BSFC最初滴加IB10,随后升高,随着异丁醇的浓度增加而上升。与汽油相比,共混物导致未燃烧的烃(HC)的量显着降低,无碳一氧化碳(CO)的变化。然而,氮气量(NO_X)的氧化物量相当大。

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