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Numerical Investigation of GDI Injector Nozzle Geometry on Spray Characteristics

机译:GDI喷射器喷嘴几何对喷射特性的数值研究

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The large eddy simulation (LES) with Volume of Fluid (VOF) interface tracking method in Ansys-FLUENT has been used to study the effects of nozzle hole geometrical parameters on gasoline direct injection (GDI) fuel injectors, namely the effect of inner hole length/diameter (L/D) ratio and counter-bore diameters on near field spray characteristics. Using iso-octane as a model fuel at the fuel injection pressure of 200 bar, the results showed that the L/D ratio variation of the inner hole has a more significant influence on the spray characteristics than the counter-bore diameter variation. Reducing the L/D ratio effectively increases the mass flow rate, velocity, spray angle and reduces the droplet size and breakup length. The increased spray angle results in wall impingements inside the counter-bore cavity, particularly for L/D=1 which can potentially lead to increased deposit accumulation inside fuel injectors. The influences of the counter-bore diameter become more obvious with decreased L/D ratio. For the lower L/D ratio, the sprays with large included angles are more vulnerable to the air entrained into the counter-bore cavity and the recirculation flow inside it. Increasing the counter-bore diameter has an overall adverse effect on the spray characteristics as the spray exits the counter-bore. Flow rates and spray angles decrease and droplet sizes are increased with increased counter-bore diameters for any given L/D ratio. The positive recirculation inside the small diameter counter-bores improves the mass flow rate from the inner hole. Inside the counter-bore cavity and further downstream from it, large interconnected ligaments are present which undergo deformation and secondary breakup.
机译:大涡模拟(LES)与流体(VOF)接口跟踪Ansys中-FLUENT方法的体积已经被用于研究的喷嘴孔几何参数对汽油直接喷射(GDI)的影响的燃料喷射器,内孔长度的即效/近场喷雾特性直径(L / d)的比例和沉孔的直径。使用异辛烷作为在200巴的燃料喷射压力的燃料模型,结果表明,该内孔的L / d比率变化对比埋头孔直径变化的喷雾特性的更显著影响。减少了L / d比率有效地增加了质量流率,速度,喷雾角,降低了液滴尺寸和破碎长度。增大喷雾角度导致沉孔腔内壁撞击综合征患者,特别是对于L / d = 1,这可潜在地导致燃料喷射器内部增加存款积累。沉孔直径的影响成为具有降低的L / d比率比较明显。对于较低的L / d比,与大夹角的喷雾更容易受到夹带到埋头孔腔和在其内部再循环流中的空气。增加计数器孔直径作为喷雾离开反孔具有在喷雾特性的总体不良影响。流速和喷雾角度减小,并且液滴尺寸与增加的埋头孔的直径为任何给定的L / d比率增加。小直径锥口孔内部的正再循环提高了从内孔的质量流率。内的沉孔空腔和更下游的,相互连接的大韧带存在其中发生变形和二次破碎。

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