首页> 外文会议>ASME Internal Combustion Engine Division Fall Technical Conference >STATISTICAL QUANTIFICATION OF KNOCK WITH SPARK IGNITION AND PRE-CHAMBER JET IGNITION IN A LIGHT DUTY GASOLINE ENGINE
【24h】

STATISTICAL QUANTIFICATION OF KNOCK WITH SPARK IGNITION AND PRE-CHAMBER JET IGNITION IN A LIGHT DUTY GASOLINE ENGINE

机译:光汽油发动机中火花点火和预室喷射点火的统计量化

获取原文

摘要

Knock is a major challenge for high load operation of spark ignited gasoline engines with higher compression ratios, since the end-gas undergoes higher temperature and pressure trajectories during combustion. Pre-chamber combustion creates long-reach ignition jets that have the potential to mitigate knock due to their rapid consumption of end-gas. However, conventional pressure oscillation-based knock metrics may not accurately capture the end-gas autoignition severity in pre-chamber systems due to differences in ignition and combustion behavior. This work investigates the knock behavior of both traditional spark ignition and pre-chamber combustion (including different nozzle designs) in a high compression ratio engine fueled with regular octane certification gasoline. The data was analyzed using statistical methods to show the random nature of knock events. Detailed analysis was used to explain the pressure oscillations of both knocking and non-knocking cycles of pre-chamber jet combustion and show that conventional pressure oscillation-based knock metrics may not adequately quantify end-gas autoignition severity. A novel knock metric is introduced to avoid consideration of the non-knock related pressure oscillation and better quantify the end-gas autoignition severity. The new metric was used to explain the knock mitigation mechanism for pre-chamber jet combustion and demonstrate an additional pre-chamber jet ignition benefit of reduced combustion variability during engine operation with cooled exhaust gas circulation within its dilution limit.
机译:敲击是具有较高压缩比的火花点燃汽油发动机的高负荷操作的主要挑战,因为燃烧期间最终气体经历更高的温度和压力轨迹。预室燃烧产生长期达到的点火喷嘴,由于它们的快速消耗终端气体而导致爆震。然而,由于点火和燃烧行为的差异,传统的压力振荡基爆震度量可能无法准确地捕获预室系统中的最终气体自燃严重程度。这项工作调查了传统的火花点火和预腔燃烧(包括不同喷嘴设计)的爆震行为,以常规辛烷值认证汽油燃料的高压缩比发动机。使用统计方法分析数据以显示爆震事件的随机性。详细分析用于解释预室射流燃烧的爆震和非敲击循环的压力振荡,并表明常规的压力振荡型爆震度量可能无法充分量化终原气体自身的严重程度。引入了一种新颖的爆震度量,以避免考虑非爆震相关压力振荡,并更好地量化最终气体自燃严重程度。新的度量用于解释预室喷射燃烧的爆震减缓机构,并证明了在其稀释极限内的冷却废气循环期间发动机操作期间减少燃烧变异的额外预室喷射点火效益。

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