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Short Spray Penetration for Direct Injection Gasoline Engines With Secondary-Drop-Breakup Simulation Integrated With Fuel-Breakup Simulation

机译:集成了二次爆破模拟和燃油爆破模拟的直喷汽油发动机的短喷渗透

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摘要

Direct injection gasoline engines have both better engine power and fuel efficiency than port injection gasoline engines. However, direct injection gasoline engines also emit more particulate matter (PM) than port injection gasoline engines do. To decrease PM, fuel injectors with short spray penetration are required. More effective fuel injectors can be preliminarily designed by numerically simulating fuel spray. We previously developed a fuel-spray simulation. Both the fuel flow within the flow paths of an injector and the liquid column at the injector outlet were simulated by using a grid method. The liquid-column breakup was simulated by using a particle method. The motion of droplets within the air/fuel mixture (secondary-drop-breakup) region was calculated by using a discrete droplet model (DDM). In this study, we applied our fuel-spray simulation to sprays for the direct injection gasoline engines. Simulated spray penetrations agreed relatively well with measured spray penetrations. Velocity distributions at the outlet of three kinds of nozzles were plotted by using a histogram, and the relationship between the velocity distributions and spray penetrations was studied. We found that shrinking the high-speed region and making the velocity-distribution uniform were required for short spray penetration.
机译:直喷汽油发动机比进气口汽油发动机具有更好的发动机功率和燃油效率。但是,直喷汽油发动机排放的颗粒物(PM)也比港口喷射汽油发动机排放的颗粒物更多。为了降低PM,需要喷射渗透力短的喷油器。可以通过数值模拟燃油喷雾初步设计出更有效的燃油喷射器。我们之前开发了燃油喷雾模拟。喷射器的流路内的燃料流和喷射器出口处的液柱都通过网格方法进行了模拟。使用粒子方法模拟了液柱破裂。通过使用离散液滴模型(DDM)计算空气/燃料混合物(次级液滴分解)区域内的液滴运动。在这项研究中,我们将燃油喷雾模拟应用于直喷汽油发动机的喷雾。模拟的喷雾渗透与测量的喷雾渗透相对较好。利用直方图绘制了三种喷嘴出口的速度分布,并研究了速度分布与喷雾渗透之间的关系。我们发现缩小高速区域和使速度分布均匀对于短喷雾渗透是必需的。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2014年第9期|091506.1-091506.8|共8页
  • 作者单位

    Hitachi, Ltd., Hitachi Research Laboratory, 832-2, Horiguchi, Hitachinaka, Ibaraki, Japan;

    Hitachi Automotive Systems, Ltd., 1671-1 Kasukawa, Isesaki, Gunma, Japan;

    Hitachi, Ltd., Hitachi Research Laboratory, 832-2, Horiguchi, Hitachinaka, Ibaraki, Japan;

    Hitachi Automotive Systems, Ltd., 2520 Takaba, Hitachinaka, Ibaraki, Japan;

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