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Effects of Fuel Laminar Flame Speed Compared to Engine Tumble Ratio, Ignition Energy, and Injection Strategy on Lean and EGR Dilute Spark Ignition Combustion

机译:燃料层压速度与发动机翻滚率,点火能量和注射策略对瘦益和EGR稀释火花点火燃烧相比的影响

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Previous studies have shown that fuels with higher laminar flame speed also have increased tolerance to EGR dilution. In this work, the effects of fuel laminar flame speed on both lean and EGR dilute spark ignition combustion stability were examined. Fuels blends of pure components (iso-octane, n-heptane, toluene, ethanol, and methanol) were derived at two levels of laminar flame speed. Each fuel blend was tested in a single-cylinder spark-ignition engine under both lean-out and EGR dilution sweeps until the coefficient of variance of indicated mean effective pressure increased above thresholds of 3% and 5%. The relative importance of fuel laminar flame speed to changes to engine design parameters (spark ignition energy, tumble ratio, and port vs. direct injection) was also assessed. Results showed that fuel laminar flame speed can have as big an effect on lean or EGR dilute engine operation as engine design parameters, with the largest effects seen during EGR dilute operation and when changes were made to cylinder charge motion.
机译:以前的研究表明,具有较高层状火焰速度的燃料也具有增加对EGR稀释的耐受性。在这项工作中,检查了燃料层压速度对稀钛和EGR稀释火花点火燃烧稳定性的影响。在两个层状火焰速度的两个水平下衍生出纯组分(异辛烷,正庚烷,甲苯,乙醇和甲醇)的燃料融合。每个燃料混合物在单缸火花点火发动机中测试,稀释,EGR稀释扫描,直到表示平均有效压力的方差系数增加超过3%和5%的阈值。还评估了燃料层压火焰速度与发动机设计参数(火花点火能量,滚珠比例和直接注射)的变化的相对重要性。结果表明,燃料层压火焰速度可以对瘦或EGR稀释发动机操作作为发动机设计参数的影响,具有在EGR稀释操作期间看到的最大效果以及对气缸充电运动进行变化时。

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