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Numerical study of the effects of injector needle movement and the nozzle inclination angle on the internal fluid flow and spray structure of a group-hole nozzle layout

机译:喷油嘴针头运动和喷嘴倾斜角度对组孔喷嘴布局内部流体流动和喷射结构影响的数值研究

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In this study, we explored the spray behavior as a result of microscopic variations in the flow characteristics when the nozzle hole inclination angle was varied and the needle reciprocated. The volume fraction and viscosity contours were investigated at three needle modes of 0.01, 0.25, and 0.24 mm using three nozzle inclination angles of 10°, 15°, and 30°. We determined the relationship between the two key parameters of liquid viscosity (which developed in the sac-volume and nozzles) and volume vapor fraction in the injector with the spray characteristics and the equivalence ratio by considering different needle positions and inter-nozzle angles as objective variables. It was found that a lower included angle led to higher viscosity development in nozzles with low cavitation formation, whereas increasing the inclination angle increased the viscosity amplitude in the sac-volume section and decreased the viscosity in the nozzles, as well as yielding more cavitation formation along the nozzles. The lowest viscosity was obtained with an inclination angle of 15°, which may facilitate the primary breakup process during spray atomization. The highest spray dispersion was achieved with a nozzle angle of 15°, which was due mostly to higher cavitation and a lower spatial viscosity distribution. Comparisons of the model and experimental data demonstrated the validity of the predicted spray structures based on simulations in terms of penetration and the droplet diameter.
机译:在这项研究中,我们研究了当喷嘴孔倾角变化并且针头往复运动时,由于流动特性的微观变化而导致的喷雾行为。使用10°,15°和30°的三个喷嘴倾斜角,在0.01、0.25和0.24 mm的三种针模式下研究了体积分数和粘度轮廓。我们通过考虑不同的针头位置和喷嘴间角度,确定了液体粘度(在囊和喷嘴中产生)和喷射器中的体积蒸气分数与喷雾特性和当量比的两个关键参数之间的关系。变量。已经发现,较低的夹角会导致在低空化形成的喷嘴中产生更高的粘度,而增加倾角会增加囊体积部分的粘度幅度并降低喷嘴的粘度,并产生更多的空化现象沿着喷嘴。以15°的倾斜角获得了最低的粘度,这可能有助于喷雾雾化过程中的初次破碎过程。喷嘴角度为15°时,喷雾分散度最高,这主要是由于较高的空化作用和较低的空间粘度分布所致。模型和实验数据的比较证明了基于渗透和液滴直径模拟的预测喷雾结构的有效性。

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