首页> 外文OA文献 >Effect of pilot injection on mixture formation, ignition process and flame development in diesel combustion
【2h】

Effect of pilot injection on mixture formation, ignition process and flame development in diesel combustion

机译:引燃喷射对柴油机燃烧中混合气形成,着火过程和火焰形成的影响

摘要

The alternative combustion strategies with systematic control of mixture formation have provided new opportunities and considerable improvement in the combustion process and response to meet the stringent emissions standards. Purpose of this research is to investigate the influences of pilot injection on the fuel-air premixing especially during ignition delay period. During this period, the interaction between fuel spray and surrounding gas prior to ignition which linked to the improvement of mixture formation, ignition process and initial heat recovery thus predominantly influences the combustion process and exhaust emissions. This study investigate the effects of pilot injection using a rapid compression machine together with the schlieren photography and direct photography methods. The detail behavior of mixture formation during ignition delay period was investigated using the schlieren photography system with a high speed digital video camera. This method can capture spray evaporation, spray interference and mixture formation clearly with real images. Ignition process and flame development were investigated by direct photography method using a light sensitive high-speed color digital video camera. Pilot injection promotes mixture formation during ignition delay period and slower oxidation reaction and thus leads to earlier rise and lower peak heat release rate.
机译:系统控制混合物形成的替代燃烧策略为满足严格的排放标准提供了新的机会,并极大地改善了燃烧过程和响应。本研究的目的是研究引燃喷射对燃油-空气预混的影响,尤其是在点火延迟期间。在此期间,点火前燃料喷雾和周围气体之间的相互作用与混合气形成,点火过程和初始热量回收的改善有关,从而主要影响燃烧过程和废气排放。这项研究调查使用快速压缩机与schlieren摄影和直接摄影方法一起进行先导注入的效果。使用带有高速数码摄像机的schlieren摄影系统研究了点火延迟期间混合气形成的详细行为。该方法可以用真实图像清晰地捕获喷雾蒸发,喷雾干扰和混合物形成。使用光敏高速彩色数字摄像机通过直接摄影方法研究了点火过程和火焰的产生。先导喷射可在点火延迟期间促进混合物形成,并降低氧化反应的速度,从而导致提早上升和降低峰值放热速率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

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