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Investigations into Multiple Premixed Compression Ignition Mode Fuelled with Different Mixtures of Gasoline and Diesel

机译:调查用不同混合物的汽油和柴油混合物调查多种预混压缩点火模式

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A study of Multiple Premixed Compression Ignition (MPCI) with mixtures of gasoline and diesel is performed on a light-duty single cylinder diesel engine. The engine is operated at a speed of 1600rpm with the same fuel mass per cycle. By keeping the same intake pressure and EGR ratio, the influence of different blending ratios in gasoline and diesel mixtures (90vol%, 80vol% and 70vol% gasoline) is investigated. Combustion and emission characteristics are compared by sweeping the first (-95 ~ -35deg ATDC) and the second injection timing (-1 ~ 9deg ATDC) with an injection split ratio of 80/20 and an injection pressure of 80MPa. The results show that compared with diesel combustion, the gasoline and diesel mixtures can reduce NO_x and soot emissions simultaneously while maintaining or achieving even higher indicated thermal efficiency, but the HC and CO emissions are high for the mixtures. The NO_x emission of the gasoline and diesel mixture is kept less than 0.4 g/kWh with about 25% EGR and at some points the soot emission is less than 0.06 1/m, which is equivalent to 0.5FSN. With the same first injection timing, increasing the portion of diesel in the fuel brings high pressure rise rate and soot emission due to the early combustion phase and short mixing time, but it can reduce CO and HC emissions. Retarding the second injection timing can significantly increase the soot emission, especially for the mixture containing less gasoline component. The ignition delay of the second stage combustion is almost the same for three fuels and the second injection finishes before the ignition.
机译:对汽油和柴油混合物的多重预混压缩点火(MPCI)的研究在轻型单缸柴油发动机上进行。该发动机以1600rpm的速度操作,每循环具有相同的燃料质量。通过保持相同的进气压力和EGR比,研究了不同混合比在汽油和柴油混合物中的影响(90Vol%,80Vol%和70Vol%汽油)。通过将第一(-95〜-35deg ATDC)和第二注射正时(-1〜9deg ATDC)的注射分流比为80/20和80MPa的喷射压力来比较燃烧和发射特性。结果表明,与柴油燃烧相比,汽油和柴油混合物可以同时减少NO_X和烟灰排放,同时保持或实现更高的显示的热效率,但HC和CO排放对于混合物高。汽油和柴油混合物的NO_X排放含量小于0.4g / kWH,约25%EGR,并且在某些点处,烟灰发射小于0.061 / m,其等于0.5fsn。利用相同的第一喷射正时,增加燃料中的柴油部分由于早期燃烧相和短混合时间而增加了高压上升速率和烟灰发射,但它可以减少CO和HC排放。延迟第二喷射正时可以显着增加烟灰发射,特别是对于含有较少的汽油组分的混合物。对于三个燃料,第二级燃烧的点火延迟几乎相同,并且在点火之前的第二喷射面部饰面几乎相同。

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