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Turbulent spark-jet ignition in SI gas fuelled engine

机译:Si气体燃料发动机的湍流火花喷射点火

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The article contains a thermodynamic analysis of a new combustion system that allows the combustion of stratified gas mixtures with mean air excess coefficient in the range 1.4-1.8. Spark ignition was used in the pre-chamber that has been mounted in the engine cylinder head and contained a rich mixture out of which a turbulent flow of ignited mixture is ejected. It allows spark-jet ignition and the turbulent combustion of the lean mixture in the main combustion chamber. This resulted in a two-stage combustion system for lean mixtures. The experimental study has been conducted using a single-cylinder test engine with a geometric compression ratio ε = 15.5 adapted for natural gas supply. The tests were performed at engine speed n = 2000 rpm under stationary engine load when the engine operating parameters and toxic compounds emissions have been recorded. Analysis of the results allowed to conclude that the evaluated combustion system offers large flexibility in the initiation of charge ignition through an appropriate control of the fuel quantities supplied into the pre-chamber and into the main combustion chamber. The research concluded with determining the charge ignition criterion for a suitably divided total fuel dose fed to the cylinder.
机译:该物品含有新型燃烧系统的热力学分析,允许分层气体混合物的燃烧,其空气过量系数在1.4-1.8的范围内。在已经安装在发动机气缸盖中的预室中使用火花点火并含有富含浓的混合物,其中弹出了湍流的燃烧混合物。它允许喷射喷射点火和主燃烧室中瘦混合物的湍流燃烧。这导致了一种用于瘦混合物的两级燃烧系统。使用单缸试验起发动机进行了实验研究,具有几何压缩比ε= 15.5,适用于天然气供应。当记录发动机运行参数和有毒化合物排放时,在发动机速度下以发动机速度N = 2000 rpm进行测试。允许的结果分析得出结论,评估的燃烧系统通过适当地控制在预室中的燃料量和进入主燃烧室的燃料量的充气点火中提供大的灵活性。该研究结束了,确定适当分开的送入气缸的总燃料剂量的电荷点火标准。

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