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A Study of the Effects of Varying the Supercharging Pressure and Fuel Octane Number on Spark Ignition Engine Knocking using Spectroscopic Measurement and In-cylinder Visualization

机译:使用光谱测量和气缸可视化改变增压压力和燃料辛烷值对火花点火发动机爆震的影响的研究

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Engine downsizing with a turbocharger/supercharger has attracted attention as a way of improving the fuel economy of automotive gasoline engines, but this approach can be frustrated by the occurrence of abnormal combustion. In this study, the factors causing abnormal combustion were investigated using a supercharged, downsized engine that was built by adding a mechanical supercharger. Combustion experiments were conducted in which the fuel octane number and supercharging pressure were varied while keeping the engine speed, equivalence ratio and intake air temperature constant. In the experiments, a visualization technique was applied to photograph combustion in the combustion chamber, absorption spectroscopy was used to investigate the intermediate products of combustion, and the cylinder pressure was measured. The experimental data obtained simultaneously were then analyzed to examine the effects on combustion. The results showed that increasing fuel octane number had effect of moderating combustion by lengthening period from development of a cool flame to occurrence of autoignition. Additionally, increasing the supercharging pressure retarded the onset of the cool flame reactions and advanced the occurrence of autoignition.
机译:发动机缩小用涡轮增压器/增压器吸引了一种改善汽车汽油发动机燃料经济性的一种方式,但这种方法可能会因异常燃烧而受挫。在这项研究中,使用通过添加机械增压器构建的增压尺寸的发动机来研究引起异常燃烧的因素。进行燃烧实验,其中燃料辛烷值和增压压力在保持发动机速度,等效比和进气温温度恒定的同时变化。在实验中,将可视化技术应用于燃烧室中的拍摄燃烧,使用吸收光谱来研究燃烧的中间产物,并测量气缸压力。然后分析同时获得的实验数据以检查对燃烧的影响。结果表明,燃料辛烷值的增加通过从开发凉爽的火焰的延长时间与自燃发生时的延长期具有温和的燃烧。另外,增加增压压力延迟了凉爽的火焰反应的发作并提出了自燃的发生。

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