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Effect of Dimensionless Numbers on Air Core Diameter of Pressure- Swirl Atomizer

机译:无量纲数对压力 - 旋流雾化器空气芯直径的影响

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Air core is an important parameter in pressure swirl atomizer since formation of air core determines the thickness of the discharged liquid sheet and the effective flow area of nozzle discharge. This consequently will affect the coefficient of discharge and the spray angle. This study conducted for the investigation of the relation between dimensionless numbers on the air core diameter. Dimensionless numbers are helpful aid for the quantification of independent parameters involving atomizer design and operating conditions simultaneously. Reynolds number, Re and orifice-to-swirl chamber diameter ratio, N are the dimensionless numbers selected for this study. Despite of the availability of study on the effect of dimensionless numbers on air core diameter, more study requires especially for smaller N. An experimental test-rig was constructed to conduct the performance test of the atomizer. Acquired images were analyzed using image-processing software. It was found that N has more significant effect on the change of air core diameter compared to Re. However, it is observed that at Re = 40000, N = 0.07 produces almost similar air core diameter with N = 0.25 at Re 20000. In contrast, with N = 0.5, air core diameter produces are larger even at Re 20000. Hence, it can be concluded that both Re and N are important parameters in characterizing the air core diameter in pressure-swirl atomizer.
机译:空气芯是压力旋流雾化器中的重要参数,因为空气芯的形成决定了排出的液体片的厚度和喷嘴放电的有效流动面积。因此,这将影响放电系数和喷射角度。该研究进行了对空气芯直径的无量纲数之间的关系进行调查。无量纲数字是有助于同时涉及雾化器设计和操作条件的独立参数的辅助。 Reynolds数,Re和孔口到旋流室直径比,N是为本研究选择的无量纲数。尽管有缺乏对空气芯直径的无量纲数的效果的研究,但更多的研究需要特别适用于较小的N.实验试验钻井平台以进行雾化器的性能试验。使用图像处理软件分析获取的图像。结果发现,与RE相比,N对空气芯直径的变化具有更大的影响。然而,观察到,在RE = 40000,n = 0.07在RE <20000处产生几乎与n = 0.25的空气芯直径。相反,在N = 0.5,即使在RE <20000,空气芯直径也会产生更大的。 ,可以得出结论,RE和N是在压力 - 旋流雾化器中表征空气芯直径的重要参数。

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