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Cavitation in Fuel Injection Systems for Spray-Guided Direct Injection Gasoline Engines

机译:用于喷射引导直喷式汽油发动机的燃料喷射系统的空化

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Cavitation formation and development inside various types of nozzles for close-spacing, spray-guided fuel injection systems is predicted using a computational fluid dynamics cavitation model. The fuel injection systems investigated include generic geometries of multi-hole nozzles and outwards-opening pintle injectors. Model validation is performed against experimental data reported elsewhere in large-scale transparent nozzle replicas. The results confirm that cavitation strongly depends on the geometry of the nozzle and the operating conditions. For multi-hole nozzles, cavitation structures similar to those realized in diesel injectors are formed. These include the needle seat cavitation realized at low needle lifts, the geometrically induced hole entry cavitation and string cavitation developing inside the sac volume. A more chaotic and less understood cavitation pattern develops at the sealing area of inward seal band outwards-opening nozzles. Vapor pockets have been found to develop around the circumferential area of the needle sealing area in a transient mode. Parametric studies obtained under realistic injection and back pressure conditions reveal the effect of nozzle design on the different nozzle flow patterns that may form during the injection timing.
机译:用于近距离的各种类型的喷嘴内部的空化形成和显影,使用计算流体动力学空化模型预测喷射引导的燃料喷射系统。研究的燃料喷射系统包括多孔喷嘴的通用几何形状和向外开口叉喷射器。模型验证是针对大型透明喷嘴复制品中其他地方报告的实验数据进行的。结果证实,空化强烈取决于喷嘴的几何形状和操作条件。对于多孔喷嘴,形成类似于在柴油喷射器中实现的空化结构。这些包括在低针升降机中实现的针座空化,几何诱导的空穴入口空化和串在囊体内部显现出来。在向内密封带外开口喷嘴的密封区域发出更加混乱和更少的空气图案。已经发现蒸汽袋在瞬态模式下围绕针密封区域的圆周区域发生。在现实注射和背压条件下获得的参数研究揭示了喷嘴设计在喷射正时可以形成的不同喷嘴流动模式的效果。

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