Crank-Angle Resolved Imaging of Fuel Distribution, Ignition and Combustion in a Direct-Injection Spark-Ignition Engine

J. D. Smith, V. Sick
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引用次数: 12

Abstract

A combination of imaging techniques for investigations of highly transient processes and cyclic variations in internal combustion engines is presented. The single high-speed camera setup uses a CMOS camera combined with a two-stage image-intensifier and two excimer lasers. Fuel mixing, ignition and combustion were monitored via planar laser induced fluorescence imaging of toluene as a tracer that was added to iso-octane in combination with the simultaneous recording of light emission from the spark plasma and OH chemiluminescence of the developing flame. Image frame rates of 12 kHz for hundreds of cycles were achieved. Application to misfire events in a spray-guided gasoline direct-injection engine is described to illustrate the merits of the technique.
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直喷式火花点火发动机燃料分布、点火和燃烧的曲柄角分辨成像
结合成像技术的研究高度瞬态过程和循环变化的内燃机提出。单高速相机设置使用CMOS相机结合两级图像增强器和两个准分子激光器。采用平面激光诱导荧光成像技术,将甲苯作为示踪剂加入到异辛烷中,同时记录火花等离子体的发光和发展火焰的OH化学发光,监测燃料混合、点火和燃烧过程。实现了数百个周期的12 kHz图像帧率。介绍了该技术在喷雾引导汽油直喷发动机失火事故中的应用,以说明该技术的优点。
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