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'Experimental investigation of the effect of ambient gas temperature on the autoignition properties of ethanol-diesel fuel blends'

机译:“环境温度对乙醇-柴油混合燃料自燃性能影响的实验研究”

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摘要

Due to increasing fuel consumption in various industries, especially in road transport, interest in increasing the market proportion of renewable fuels is growing. The raw materials for production of ethanol may include sugar beets, sugar cane, potatoes and many other plants containing starch. In some countries, ethanol has been successfully used for many years as a self-contained fuel in positive-ignition engines after subjection to relatively minor technical modifications. Due, among other things, to a very low cetane number, this fuel cannot be used in diesel engines. For this reason, increasing attention is being paid to fuels that are blends of diesel with some ethanol fraction. Diesel fuel containing up to 15% (v/v) of ethanol is sometimes referred to as e-diesel or oxygenated diesel. In this study, the autoignition properties of blends of typical diesel fuel with ethanol have been tested with ethanol contents up to 14% (v/v) and where a constant volume combustion chamber was used. The study determined the effect of gaseous medium temperature in the range 550-650 degrees C on the period of ignition delay and the period of combustion delay. The average and maximum rates of pressure rise in the combustion chamber were also analysed. Studies have shown that, with an increase of ethanol fraction in diesel fuel, the periods of ignition and combustion delay increase, and the increase in the temperature of the gaseous medium into which the fuel is injected shortens these periods to a varying extent.
机译:由于各种行业,特别是公路运输中燃料消耗的增加,对增加可再生燃料的市场比例的兴趣正在增长。生产乙醇的原料可能包括甜菜,甘蔗,土豆和许多其他含有淀粉的植物。在一些国家,经过相对较小的技术改造,乙醇已成功地用作正点火发动机中的自包含燃料多年。除其他因素外,由于十六烷值非常低,该燃料无法在柴油发动机中使用。因此,人们越来越关注由柴油与一些乙醇馏分混合而成的燃料。含有不超过15%(v / v)乙醇的柴油有时被称为电子柴油或含氧柴油。在这项研究中,已经测试了典型柴油燃料与乙醇的混合物的自燃特性,其中乙醇含量高达14%(v / v),并且使用了恒定容积的燃烧室。该研究确定了550-650摄氏度范围内的气态介质温度对点火延迟时间和燃烧延迟时间的影响。还分析了燃烧室中压力的平均和最大上升速率。研究表明,随着柴油中乙醇含量的增加,引燃和燃烧延迟的时间增加,并且注入燃料的气态介质温度的升高在不同程度上缩短了这些时间。

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