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Operation of a Spark-Ignition Engine on Mixtures of Petrol and N-Butanol

机译:汽油和正丁醇混合物上的火花点火发动机的操作

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The Article analyses the use of n-butanol (biobutanol) in mixtures with petrol in spark-ignition (SI) internal combustion engines (ICE). Analysis of the scientific literature allowed determining that n-butanol content had a different effect on the same engine parameters in different tests, thus a decision was made to conduct additional research, where, having assembled the necessary equipment and conducted experimental planning, experimental studies of n-butanol (with its volumetric content being 0%, 20% and 40%) and petrol blends in a SI engine were carried out. Regression analysis of research results was conducted and regression dependences were formed allowing evaluating the impact of the key variables (δ and θ) on engine parameters (Me, Pe and be). The research results have shown that without changing the ignition advance angle θ, petrol blend with 10% n-butanol has essentially no adverse effect on engine power Pe, engine torque Me and specific fuel consumption be. Increasing n-butanol concentration 8, the maximum engine torque Me and effective power Pe decrease, while the specific fuel consumption be increases. Energy engine indicators decline as a result of a lower calorific capacity of n-butanol compared to that of petrol and lower combustion rate of n-butanol. Increasing n-butanol concentration 5 in fuel mixture, engine parameters can be improved by advancing the ignition angle θ.
机译:本文分析了在火花点火(Si)内燃机(冰)中用汽油的混合物中使用正丁醇(Beobutanol)。科学文献的分析允许确定正丁醇含量对不同测试中的相同发动机参数产生不同的影响,因此进行了决定进行额外的研究,其中,组装了必要的设备和进行了实验规划,实验研究进行正丁醇(其体积含量为0%,20%和40%)和Si发动机中的汽油共混物。进行研究结果的回归分析,形成回归依赖性,允许评估关键变量(δ和θ)对发动机参数(ME,PE和BE)的影响。研究结果表明,在不改变点火前进角θ的情况下,汽油混合物与10%正丁醇的汽油混合物对发动机功率PE具有不利影响,发动机扭矩ME和特定的燃料消耗。增加正丁醇浓度8,最大发动机扭矩和有效的功率PE减小,而特定的燃料消耗增加。与汽油的较低的正丁醇和较低的正丁醇的燃烧速率相比,能量引擎指示剂由于正丁醇的较低热容量而下降。通过推进点火角θ,可以提高燃料混合物中的正丁醇浓度5,通过推进点火角θ可以提高发动机参数。

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