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Impact of gasoline direct injection fuel injector hole geometry on spray characteristics under flash boiling and ambient conditions

机译:闪蒸和环境条件下汽油直喷喷油嘴孔的几何形状对喷雾特性的影响

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The effect of injector nozzle design on the Gasoline Direct Injection (GDI) fuel spray characteristics under atmospheric and flash boiling conditions was investigated using Phase Doppler Anemometry (PDA) measurements. To understand the impact of hole diameter and conicity, experiments were conducted on two bespoke 3-hole injectors in a pressure and temperature controlled constant volume chamber and in the open air. The measurements were taken radially outward from the injector axis to the outer extent of the plume at distances of 15 mm, 25 mm and 40 mm from the injector tip.Observations of the influence of surrounding gas and temperature conditions and hole design on the injector spray performance were made. Under non-flash boiling conditions, it was found that the injection pressure dictates the length of the spray penetration before collapse occurs, with an increase in pressure resulting in an increase in this length. Comparison of mean velocity and droplet diameter data are also made to understand the performance under flash boiling conditions. Results show that, under flash boiling conditions, the droplet velocity significantly increases while the droplet size reduces. More importantly, it is found that the impact of the flash boiling environment on sprays of different hole geometries is different. Some hole designs offer more resistance against spray collapse. It was found that the mid-sized of the three hole diameters tested here was found to produce a spray that more readily collapsed than that of the smaller or larger hole diameters. In addition, it was found that under flash boiling conditions, the convergent hole had a greater propensity to exhibit spray collapse.
机译:使用相位多普勒风速仪(PDA)测量研究了喷油嘴设计对大气和闪蒸条件下汽油直喷(GDI)燃油喷雾特性的影响。为了了解孔直径和锥度的影响,在压力和温度控制的恒定容积室内以及在露天条件下,对两个定制的3孔注射器进行了实验。测量是从喷油器轴线径向向外到达羽流的外部范围,距离喷油器尖端15毫米,25毫米和40毫米。观察周围气体和温度条件以及孔设计对喷油器喷雾的影响表演了。在非闪蒸沸腾条件下,发现喷射压力决定了塌陷发生之前喷雾渗透的长度,压力的增加导致该长度的增加。还比较了平均速度和液滴直径数据,以了解闪蒸条件下的性能。结果表明,在闪蒸条件下,液滴速度显着增加,而液滴尺寸减小。更重要的是,发现闪蒸环境对不同孔几何形状的喷雾的影响是不同的。一些孔设计可提供更大的抗喷雾崩塌性。发现在此测试的三个孔直径的中等尺寸产生的喷雾比较小或较大孔直径的喷雾更容易塌陷。另外,发现在闪蒸条件下,会聚孔具有更大的倾向以显示喷雾塌陷。

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