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Optimized design of a new gasoline direct swirl injector

机译:新型汽油直旋式喷油器的优化设计

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摘要

The internal flow characteristics of a gasoline direct injector (GDI) have been studied to improve fuel economy and reduce exhaust emissions, Computational fluid dynamics (CFD) is used to examine the internal flow of the GDI with the purpose of designing the optimum geometry of the injector. The design parameters include orifice length, cone angle, swirl angle, orifice diameter, and needle lift. Numerical results show that optimum sizes of the orifice length, cone angle, swirl angle, orifice diameter, and needle lift are 0.8 mm, 140 degrees, 120 degrees, 0.8 mm, and 70 mum, respectively. The size of the lift does not affect the formation of the air core significantly near the tip of the needle compared with the ball-type needle. The vena contracta phenomenon near the orifice inlet can he released by smoothing the edge. [References: 12]
机译:已经研究了汽油直喷器(GDI)的内部流动特性,以提高燃油经济性并减少废气排放,计算流体动力学(CFD)用于检查GDI的内部流动,以设计最佳的进气道几何形状。注射器。设计参数包括孔口长度,锥角,旋流角,孔口直径和针头升程。数值结果表明,孔口长度,锥角,旋流角,孔口直径和针头升程的最佳尺寸分别为0.8毫米,140度,120度,0.8毫米和70毫米。与球形针相比,升程的大小不会显着影响针尖附近的空芯形成。孔口附近的腔静脉收缩现象可以通过使边缘变光滑来释放。 [参考:12]

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