首页> 外文期刊>SAE International Journal of Fuels and Lubricants >Intermediate Alcohol-Gasoline Blends, Fuels for Enabling Increased Engine Efficiency and Powertrain Possibilities
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Intermediate Alcohol-Gasoline Blends, Fuels for Enabling Increased Engine Efficiency and Powertrain Possibilities

机译:中间汽油-汽油混合物,可提高发动机效率和动力总成可能性的燃料

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摘要

The present study experimentally investigates spark-ignited combustion with 87 AKI E0 gasoline in its neat form and in mid-level alcohol-gasoline blends with 24% vol./vol. iso-butanol-gasoline (IB24) and 30% vol./vol. ethanol-gasoline (E30). A single-cylinder research engine is used with a low and high compression ratio of 9.2:1 and 11.85:1 respectively. The engine is equipped with hydraulically actuated valves, laboratory intake air, and is capable of external exhaust gas recirculation (EGR). All fuels are operated to full-load conditions with λ=1, using both 0% and 15% external cooled EGR. The results demonstrate that higher octane number bio-fuels better utilize higher compression ratios with high stoichiometric torque capability. Specifically, the unique properties of ethanol enabled a doubling of the stoichiometric torque capability with the 11.85:1 compression ratio using E30 as compared to 87 AKI, up to 20 bar IMEP_g at λ=1 (with 15% EGR, 18.5 bar with 0% EGR). EGR was shown to provide thermodynamic advantages with all fuels. The results demonstrate that E30 may further the downsizing and downspeeding of engines by achieving increased low speed torque, even with high compression ratios. The results suggest that at mid-level alcohol-gasoline blends, engine and vehicle optimization can offset the reduced fuel energy content of alcohol-gasoline blends, and likely reduce vehicle fuel consumption and tailpipe CO_2 emissions.
机译:本研究通过实验研究了87纯净AKI E0汽油和24%体积/体积的中级酒精-汽油混合物的火花点火燃烧。异丁醇汽油(IB24)和30%体积/体积乙醇汽油(E30)。使用单缸研究引擎,其低和高压缩比分别为9.2:1和11.85:1。该发动机配备有液压驱动阀,实验室进气,并且能够进行外部废气再循环(EGR)。使用0%和15%的外部冷却EGR,所有燃料均在λ= 1的满负荷条件下运行。结果表明,较高的辛烷值生物燃料可以更好地利用具有高化学计量扭矩能力的较高压缩比。具体来说,乙醇的独特性能使E30的压缩比为11.85:1时,与87 AKI相比,化学计量扭矩能力翻了一番,在λ= 1时,IMEP_g高达20 bar(EGR为15%,08.5%为18.5 bar) EGR)。 EGR被证明可以为所有燃料提供热力学优势。结果表明,即使在高压缩比的情况下,E30仍可通过实现增加的低速扭矩来进一步降低发动机的尺寸和速度。结果表明,在中级酒精汽油混合气中,发动机和车辆的优化可以抵消酒精汽油混合气减少的燃料能量含量,并有可能减少车辆燃油消耗和尾气CO_2排放。

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