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A non-linear model for impinging jets atomization

机译:撞击射流雾化的非线性模型

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摘要

The problem considered is predicting the characteristics of the spray produced by atomization of an attenuating liquid sheet formed by the impingement of two liquid jets of equal diameters and momenta. A second-order non-linear perturbation analysis is employed to model the evolution of harmonic instability waves that lead to sheet distortion and fragmentation. The onset of atomization occurs when the uneven surface modulations of the thinning sheet bring its upper and lower interfaces in contact. It is found that the sheet is torn into ligaments at each half wavelength. The instability of the ligaments causes their eventual disintegration into drops. The results indicate that sheet breakup length, time, and resultant drop size decrease as Weber number is increased. A higher Weber number induces a greater sheet breakup thickness. The breakup length, thickness, time, and drop size are diminished at larger impingement angles. The theoretical predictions of the present non-linear model are in good agreement with available experimental data and empirical correlations for sheet breakup length and drop size.
机译:所考虑的问题是预测由雾化的衰减液体薄片的雾化产生的喷雾的特性,该衰减液体薄片是由两个直径和动量相等的液体射流撞击而形成的。使用二阶非线性扰动分析来模拟导致板变形和碎裂的谐波不稳定波的演变。当薄板的不均匀表面调制使其上,下界面接触时,就会发生雾化。发现在每个半个波长处该片都被撕成韧带。韧带的不稳定性导致其最终崩解成液滴。结果表明,随着韦伯数的增加,纸页的破裂长度,时间和最终的墨滴尺寸减小。较高的韦伯数会导致较大的纸张破裂厚度。在较大的碰撞角度下,破碎长度,厚度,时间和液滴尺寸会减小。当前非线性模型的理论预测与可用的实验数据以及片破裂长度和液滴尺寸的经验相关性非常一致。

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