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Study for ignition characteristics and potential of gasoline autoignition combustion with spark assist

机译:用火花辅助的点火特性及汽油自燃燃烧潜力研究

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A spark assist system was installed in a gasoline direct-injection single-cylinder test engine with the aim of controlling the ignition timing and accomplishing combustion of gasoline fuel by auto/compression ignition. A primary reference fuel having an octane number of 90 (PRF 90) was used to evaluate experimentally the spark assist function for gasoline auto/compression ignition and to examine the feasibility of combustion with a short ignition delay equivalent to conventional diesel combustion using the engine system. An optically accessible single-cylinder test engine was also used to evaluate and investigate spark-assisted auto/compression ignition. Ignition timing controllability with combinations of spark and injection timings for gasoline auto/compression ignition was also investigated under different operating load conditions. The results showed that the spark assist system was required to optimize fuel sprays and a high possibility was seen for soot-less and high thermal efficiency gasoline auto/compression ignition combustion. High thermal efficiency and low emissions performance were also obtained. Thermal efficiency and emissions performance were almost the same under the different load conditions. Maximum indicated thermal efficiency of approximately 42% (compared with 43% for diesel combustion) was obtained along with NO_x emissions of 800 ppm (approximately the same as for diesel combustion) and near-zero soot (compared with 5-20 mg/m3 for diesel combustion).
机译:火花辅助系统被安装在与控制所述点火正时和通过自动/压缩点火完成汽油燃料的燃烧的目的汽油直接喷射单缸试验发动机。使用具有90°的辛烷值(PRF 90)一种主参考燃料以实验评估火花辅助功能汽油汽车/压缩点火和使用该发动机系统具有短点火延迟相当于常规柴油燃烧检查燃烧的可行性。光学访问的单缸试验发动机也用于评估和研究火花辅助自动/压缩点火。火花和喷射的定时的汽油汽车/压缩点火的组合点火正时的可控性也被不同的操作负载条件下的影响。结果表明,在火花辅助系统被要求以优化燃料喷雾并且被视为用于烟灰少,热效率高的汽油汽车/压缩点火燃烧的可能性高。也获得高的热效率和低排放性能。热效率和排放性能几乎与不同负载条件下是相同的。最大指示的约42%(与柴油燃烧43%相比)的热效率有800ppm的NO_x的排放量(近似相同的柴油燃烧)和近零煤烟沿着得到(用5-20毫克/立方米为比较柴油燃烧)。

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