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Spray characterization of flex-fuel gasoline di injectors and spray interaction with charge motion in a variable valve actuation engine

机译:在可变气门驱动发动机中,灵活燃料汽油二喷射器的喷雾特性和喷射与充气运动的相互作用

摘要

The objective of this study is to understand the characteristics of GDI sprays and behavior of in-cylinder charge motion in a GDI engine which is equipped with variable valve actuation. High speed spray visualization in a spray chamber was conducted for a study of spray development. By Schlieren visualization technique, the effect of different conditions including ambient conditions (temperature, pressure) and injection conditions (fuel type, fuel temperature, nozzle design) on spray formation was discussed in both qualitative and quantitative methods. High-speed visualization of the in-cylinder charge motion was carried out as well using an optical accessible engine. The testing was conducted for the conventional valve strategy with the production cam, and for the advanced valve strategies with the prototype cams. Multi-dimensional CFD was carried out to support the optical engine work.By the experiments, Schlieren visualization was found to be very effective method to observe the vapor phase of the fuel spray, and the 2-stage thresholding image processing method was developed to process Schlieren images. Evaluation of the spray images revealed that the effect of flash boiling could change the spray shape drastically by plume collapse. Significance of flash boiling depended not only on ambient condition, but on injection condition and a combination of other effects including fuel properties and nozzle design. The optical engine testing revealed that the interaction of spray and in-cylinder flow, especially contradiction of the direction of spray momentum and tumble rotation, was a key factor for mixture formation. Stronger inlet air flow by low-lift cam resulted in higher turbulent energy and enhanced vaporization rate which was proven in both experiment and simulation. Deactivation of one of the intake valves produced swirl charge motion in the cylinder which was mixed with tumble. Soot emission caused by piston impingement of the early injection could be reduced by valve deactivation. The use of high-lift long-duration cam promoted more vigorous charge motion, but dynamic ratios of low-lift short-duration cam developed faster.
机译:这项研究的目的是了解配备可变气门致动的GDI发动机中GDI喷雾的特性和缸内充气运动的行为。在喷雾室内进行高速喷雾可视化研究喷雾的发展。通过Schlieren可视化技术,以定性和定量方法讨论了包括环境条件(温度,压力)和喷射条件(燃料类型,燃料温度,喷嘴设计)在内的不同条件对喷雾形成的影响。缸内充气运动的高速可视化也使用光学辅助引擎进行。测试是针对带有生产凸轮的常规气门策略,以及针对原型凸轮的高级气门策略。通过进行多维CFD来支持光学引擎的工作,通过实验发现,Schlieren可视化是观察燃油喷雾汽相的非常有效的方法,并开发了两阶段阈值图像处理方法进行处理Schlieren图片。喷雾图像的评估表明,闪蒸的影响可能会由于羽流塌陷而急剧改变喷雾形状。闪蒸的重要性不仅取决于环境条件,还取决于喷射条件以及包括燃料特性和喷嘴设计在内的其他影响的组合。光学引擎测试表明,喷雾和缸内流动的相互作用,尤其是喷雾动量方向和滚转方向的矛盾,是形成混合物的关键因素。低升程凸轮带来的更强的进气流量导致更高的湍流能量和更高的蒸发速率,这在实验和仿真中均得到了证明。进气门之一的关闭使气缸中产生涡流充气运动,并与滚筒混合。可以通过关闭阀门来减少因早期喷射的活塞撞击而产生的烟尘排放。高升程长持续时间凸轮的使用促进了更强劲的充电运动,但低升程短时持续凸轮的动态比发展得更快。

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    Matsumoto Atsushi;

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  • 年度 2012
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