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A Study on the In-cylinder Flow Characteristics of GDI High-pressure Fuel Injector Using a Transparent Engine System

机译:透明发动机系统GDI高压燃料喷射器缸流动特性研究

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The direct-injection spark ignition engine is one of the promising gasoline engine designs for achieving higher engine performance and lower fuel consumption while maintaining the excellent driving performance and low emissions. Thus an in-cylinder spray flow motion plays an important role in the adjustment of mixture preparation with a fundamental spray characteristics and in-cylinder flow field as well. In this study, the fundamental spray characteristics such as drop size, velocity distribution, spray angle, in-cylinder spray flow motion in order to optimize intake port, piston top land and combustion chamber shapes in the development stage of mass-produced GDI engine. For this purpose, the PDPA measurements and Mie scattering technique were used for detailed spray characteristics. In-cylinder spray motions were captured by ICCD camera through the single-cylinder optical engine. From the experimental results, the test injector shows a good low-end linearity between the dynamic flow and fuel injection pulse width and the fuel spray of 20μm or less in SMD with good spray symmetry. In addition, the in-cylinder tumble flow has more effect on the homogeneous mixture formation than that of in-cylinder swirl flow at early injection mode and the in-cylinder swirl flow plays a better role of stratified mixture preparation than tumble flow at late injection mode.
机译:直喷火花点火发动机是有前途的汽油发动机设计之一,用于实现更高的发动机性能和较低的燃料消耗,同时保持出色的驾驶性能和低排放。因此,缸内喷雾流动运动在用基本喷射特性和缸内流场的调节中起着重要作用。在这项研究中,诸如跌落尺寸,速度分布,喷射角,缸内喷射的根部喷射特性,以优化进气口,活塞顶部和燃烧室形状在大规模生产的GDI发动机的开发阶段。为此目的,PDPA测量和MIE散射技术用于详细的喷涂特性。通过ICCD摄像机通过单缸光学发动机捕获缸内喷射运动。从实验结果来看,测试喷射器在动态流动和燃料喷射脉冲宽度和具有良好喷涂对称的SMD中的燃料喷射脉冲宽度和燃料喷射之间的良好的低端线性度。此外,缸内滚筒对均匀混合物形成的效果比早期注射模式下的缸内旋流流动的效果更大,并且缸内旋流流动在晚注射时比滚筒流量更好地发挥着分层混合物制备的作用模式。

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