首页> 外文会议>SAE World Congress and Exhibition >Impinging Jets of Fuel on a Heated Surface: Effects of Wall Temperature and Injection Conditions
【24h】

Impinging Jets of Fuel on a Heated Surface: Effects of Wall Temperature and Injection Conditions

机译:在加热的表面上撞击燃料喷射:壁温和注射条件的影响

获取原文

摘要

In spark ignition engines, the nozzle design, fuel pressure, injection timing, and interaction with the cylinder/piston walls govern the evolution of the fuel spray inside the cylinder before the start of combustion. The fuel droplets, hitting the surface, may rebound or stick forming a film on the wall, or evaporate under the heat exchange effect. The face wetting results in a strong impact on the mixture formation and emission, in particular, on particulate and unburned hydrocarbons. This paper aims to report the effects of the injection pressure and wall temperature on the macroscopic behavior, atomization, and vaporization of impinging sprays on the metal surface. A mono-component fuel, iso-octane, was adopted in the spray-wall studies inside an optically-accessible quiescent vessel by imaging procedures using a Z-shaped schlieren-Mie scattering set-up in combination with a high-speed C-Mos camera. The arrangement was capable to acquire alternatively schlieren and Mie-scattering images in a quasi-simultaneous fashion using the same optical path. This methodology allowed complementing the liquid phases of the impact, obtained by the Mie scattering, with the liquid/vapor ones collected by the schlieren technique for determining both the phases inside a single cycle. A Delphi solenoid-activated eight-hole electro-injector was used, 0.165 mm in diameter, L/d=2 having a static flow of 15 cc/s @10.0 MPa. This injector is part of a set of six items, chosen by the Engine Combustion Network (ECN) for the gasoline characterization (Spray G), at defined injection conditions. The wall and ambient temperature ranged within 296 to 573 K, under atmospheric gas densities at the injection pressure of 20.0 MPa. The contours of the liquid phase and the vapor/atomized zone, indicative of impact evolution, were extracted by a customized algorithm operating on the data set. Repetition cycles at fixed conditions were carried out for a spread analysis on the events. Spatial and temporal evolutions were measured for the liquid and vapor/atomized phases in terms of fuel slipping (width) and rebounding penetration on the wall (thickness).
机译:在火花点火发动机中,喷嘴设计,燃料压力,喷射正时和与气缸/活塞壁的相互作用控制燃烧开始前气缸内的燃料喷雾的演变。抵抗表面的燃料液滴可以反弹或粘在壁上形成薄膜,或者在热交换效果下蒸发。面部润湿导致对混合物形成和排放的强烈影响,特别是颗粒状和未燃烧的烃。本文旨在报告注射压力和壁温对撞击金属表面上喷雾的宏观行为,雾化和蒸发的影响。通过使用Z形Schlieren-Mie散射设置的成像程序与高速C-MOS组合的成像程序,在光学可接近的静止血管内采用单组分燃料,在光学可接近的静止血管内部采用。相机。这种布置能够使用相同的光路以准同声方式获取替代的Schlieren和MIE散射图像。该方法允许通过通过Schlieren技术收集的MIE散射获得的液体阶段的液相补充,通过Schlieren技术来确定单个循环内的相位。使用Delphi螺旋体激活的八孔电熨斗,直径为0.165mm,L / D = 2具有15cc / s @ 10.0MPa的静态流动。该注射器是由发动机燃烧网络(ECN)选择的六个项目的一部分,用于汽油表征(喷雾G),在定义的注射条件下。壁和环境温度在296至573 k内,在大气气体密度下,注射压力为20.0MPa。通过在数据集上操作的定制算法提取液相和蒸汽/雾化区的轮廓,其指示冲击演化。对固定条件下的重复循环进行了对事件的展开分析。在燃料滑动(宽度)方面测量液体和蒸汽/雾化阶段的空间和时间演进,并在墙壁上的渗透渗透(厚度)。

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