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首页> 外文期刊>Journal of Mechanical Science and Technology >A study on the spray characteristics of a piezo pintle-type injector for DI gasoline engines
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A study on the spray characteristics of a piezo pintle-type injector for DI gasoline engines

机译:DI汽油发动机的压电针形喷油器的喷雾特性研究

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We studied the spray flow initiated from a piezo pintle-type injector for DI gasoline engines in an environment supplied by a constant volume vessel by means of laser diagnostics. To fully grasp the effects of the characteristic parameters, including designed spray angle, needle lift, injection pressure (P_(inj)) and ambient pressure (P_b), on the spray atomization and mixture preparation, particle image velocimetry (PIV) and phase Doppler anemometry (PDA) are used in the experiment, respectively. The gas perpendicularly enters into the outer periphery of the conical spray injected through the pintle-type injector activated by piezo, which creates two large-scale vortices: the vortex A and vortex B. The velocity standard deviation of the spray field is introduced to analyze the gas flow motion in the vicinity of nozzle. The droplet information of spray field is also recorded by PDA in variable boundary conditions. The time dividing method is used to study the droplet characteristics in four parts of spray. The injector with 98° designed spray angle has smaller droplet mean diameter (D10 and D32), due to a larger spray distribution. When the droplet velocity of the spray field is close to 0 m/s, the D10 and D32 hold at around 10 μm and 20 μm, respectively, in atmospheric pressure condition, which are about 20 μm and 40 μm, respectively, at ambient pressure of 1.1 MPa.
机译:我们研究了在恒定容积容器提供的环境中,通过激光诊断方法,从用于DI汽油发动机的压电针形针式喷油器引发的喷雾流。要充分掌握特征参数(包括设计的喷射角度,针升力,喷射压力(P_(inj))和环境压力(P_b))对喷雾雾化和混合物制备,颗粒图像测速(PIV)和相位多普勒的影响实验中分别使用风速计(PDA)。气体垂直进入通过压电驱动的针形喷油器注入的圆锥形喷雾的外围,这会产生两个大的旋涡:旋涡A和旋涡B。引入喷雾场的速度标准偏差进行分析喷嘴附近的气流运动。 PDA在可变边界条件下也记录了喷雾场的液滴信息。使用时分法研究喷雾的四个部分中的液滴特性。由于喷雾分布较大,设计喷雾角为98°的喷射器具有较小的液滴平均直径(D10和D32)。当喷雾场的液滴速度接近0 m / s时,D10和D32在大气压条件下分别保持在10μm和20μm左右,在大气压下分别保持在20μm和40μm左右。 1.1MPa。

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