首页> 外文会议>SAE World Congress and Exhibition >Impact of Ignition Energy Phasing and Spark Gap on Combustion in a Homogenous Direct Injection Gasoline SI Engine Near the EGR Limit
【24h】

Impact of Ignition Energy Phasing and Spark Gap on Combustion in a Homogenous Direct Injection Gasoline SI Engine Near the EGR Limit

机译:点火能量阶段和火花隙对EGR限制附近均匀直喷汽油SI发动机燃烧的影响

获取原文

摘要

For spark-ignition gasoline engines operating under the wide speed and load conditions required for light duty vehicles, ignition quality limits the ability to minimize fuel consumption and NO_x emissions via dilution under light and part load conditions. In addition, during transients including tip-outs, high levels of dilution can occur for multiple combustion events before either the external exhaust gas can be adjusted and cleared from the intake or cam phasing can be adjusted for correct internal dilution. Further improvement and a thorough understanding of the impact of the ignition system on combustion near the dilution limit will enable reduced fuel consumption and robust transient operation. To determine and isolate the effects of multiple parameters, a variable output ignition system (VOIS) was developed and tested on a 3.5L turbocharged V6 homogeneous charge direct-injection gasoline engine with two spark plug gaps and three ignition settings. External exhaust gas recirculation (EGR) was used to explore combustion near dilution limits with various ignition system configurations. Tests were conducted under two engine operating conditions, a road load of 2.6 bar BMEP and engine speed of 1500 rev/min and a light load of 1.5 bar BMEP and engine speed of 1000 rev/min. At these two conditions, ignition tests were performed with various external EGR rates. The results show that the spark plug gap size is the dominant factor for the two engine conditions, and that the smaller gap size plug has a lower EGR tolerance than the larger gap size. Additionally the results show that increasing total duration via continuous or discontinuous discharges improves combustion stability and EGR tolerance. Finally ignition system requirements are summarized for dilute low load combustion in the context of the overall requirements for an ignition system in DI boosted engines.
机译:对于在轻型车辆所需的广泛速度和负载条件下运行的火花点火汽油发动机,点火质量限制了通过在光线和部件负载条件下稀释最小化燃料消耗和NO_X排放的能力。另外,在包括尖端的瞬态期间,在可以从进气口或凸轮相位调节和清除外部废气之前,可以调节高水平的稀释事件,以便可以调节凸轮相位,以便正确的内部稀释。进一步的改进和对稀释极限附近燃烧对燃烧的影响的进一步改善和彻底了解将使燃料消耗降低和稳健的瞬态操作。为了确定和隔离多个参数的效果,在3.5L涡轮增压V6均匀电荷直喷汽油发动机上开发并测试了可变输出点火系统(VOIS),具有两个火花塞间隙和三个点火设置。外部废气再循环(EGR)用于探索具有各种点火系统配置的稀释限制附近的燃烧。测试是在两个发动机运行条件下进行的,道路载荷为2.6巴的BMEP和发动机速度为1500°/ min,1.5巴的轻载荷为1.5巴,发动机速度为1000 Rev / min。在这两个条件下,用各种外部EGR速率进行点火测试。结果表明,火花塞间隙尺寸是两个发动机条件的主导因素,并且较小的间隙尺寸塞具有比较大的间隙尺寸更低的EGR容差。另外,结果表明,通过连续或不连续放电增加总持续时间,提高了燃烧稳定性和EGR耐受性。最后,点火系统要求总结了在DI升压发动机的点火系统的整体要求的背景下稀释低负载燃烧。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号