首页> 外文会议>SAE World Congress Experience >Performance Assessment of a Single Jet, Dual Diverging Jets, and Dual Converging Jets in an Auxiliary Fueled Turbulent Jet Ignition System
【24h】

Performance Assessment of a Single Jet, Dual Diverging Jets, and Dual Converging Jets in an Auxiliary Fueled Turbulent Jet Ignition System

机译:辅助燃料湍流喷射点火系统中单喷射,双发散喷气机和双融合喷气机的性能评估

获取原文

摘要

An auxiliary fueled prechamber ignition system can be used in an IC engine environment to provide lean limit extension with minimal cyclic variability and low emissions. Geometry and distribution of the prechamber orifices form an important criterion for performance of these systems since they are responsible for transferring and distributing the ignition energy into the main chamber charge. Combustion performance of nozzles with a single jet, dual diverging jets and dual converging jets for a methane fueled prechamber ignition system is evaluated and compared in a rapid compression machine (RCM). Upon entering the main chamber, the dual diverging jets penetrate the main chamber in opposite directions creating two jet tips, while the dual converging jets, after exiting the orifices, converge into a single location within the main chamber. Both these configurations minimize jet-wall impingement compared to the single jet. The total cross-sectional area of the orifice(s) are maintained the same for all the nozzles while for the dual jet configurations, the angle between the nozzle holes are kept constant. High speed color images along with pressure records obtained from the experiments are further processed to extract derived quantities such as burn duration, flame edge and flame area. Experimental results revealed that the single jet and converging jets offer a slightly higher lean limit extension while the dual diverging jets offer overall superior combustion performance.
机译:辅助燃料的PreChamber点火系统可用于IC发动机环境,以提供具有最小循环变异性和低排放的贫限度延伸。 PRECHAMBER ORIFEES的几何和分布形成了这些系统的性能的重要标准,因为它们负责将点火能量转移和分配到主腔电荷。用单射流的喷嘴燃烧性能,对甲烷燃料的汽油燃料的燃料和双发料喷射器进行评估,并在快速压缩机(RCM)中进行比较。进入主腔室时,双发散喷气机在相反方向上穿过主腔室,产生两个喷射尖端,而在离开孔口之后的双重会聚射流会聚到主室内的单个位置。与单射流相比,这两种配置都最大限度地减少了射流冲击。对于双喷射配置,孔口的总横截面积与所有喷嘴保持相同,喷嘴孔之间的角度保持恒定。进一步处理高速彩色图像以及从实验中获得的压力记录以提取燃烧持续时间,火焰边缘和火焰区域的推导量。实验结果表明,单喷射和融合喷气机提供略高的贫极限延伸,而双发射喷气机提供总体卓越的燃烧性能。

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