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Ignition Delay Correlation for Engine Operating with Lean and with Rich Fuel-Air Mixtures

机译:用精益和富燃料 - 空气混合物运行的发动机的点火延迟相关性

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摘要

An ignition delay correlation encompassing the effects of temperature, pressure, residual gas, EGR, and lambda (on both the rich and lean sides) has been developed. The procedure uses the individual knocking cycle data from a boosted direct injection SI engine (GM LNF) operating at 1250 to 2000 rpm, 8-14 bar GIMEP, EGR of 0 to 12.5%, and lambda of 0.8 to 1.3 with a certification fuel (Haltermann 437, with RON=96.6 and MON=88.5). An algorithm has been devised to identify the knock point on individual pressure traces so that the large data set (of some thirty three thousand cycles) could be processed automatically. For lean and for rich operations, the role of the excess fuel, air, and recycled gas (which has excess air in the lean case, and hydrogen and carbon monoxide in the rich case) may be treated effectively as diluents in the ignition delay expression.
机译:已经开发出包括温度,压力,残留气体,EGR和λ(在浓侧和稀侧)的影响的点火延迟相关性。该程序使用来自增压直喷SI发动机(GM LNF)的单个爆震周期数据,该发动机以1250至2000 rpm的转速,8-14 bar GIMEP,EGR为0至12.5%以及λ为0.8至1.3的标准燃料( Haltermann 437,RON = 96.6,MON = 88.5)。已经设计出一种算法来识别单个压力曲线上的爆震点,以便可以自动处理大数据集(大约三万三千个循环)。对于稀薄的和浓稠的操作,多余的燃料,空气和再循环气体(稀薄的情况下具有过量的空气,而浓稠的情况下具有氢气和一氧化碳)的作用可以有效地用作点火延迟表达式中的稀释剂。 。

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