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DROPLET BREAKAGE IN STIRRED DISPERSIONS - BREAKAGE FUNCTIONS FROM EXPERIMENTAL DROP-SIZE DISTRIBUTIONS

机译:搅拌分散中的小滴破裂-实验性小滴分布的破裂功能

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Transient breakage drop-size distributions have been experimentally measured using an image analysis technique. The transient distributions show self-similar behavior. The breakage rate and daughter-drop distribution functions have been determined using an inverse-problem approach which takes advantage of this self-similarity. The inverse-problem results show that the breakage rate is not a power law function of the drop size. The breakage rate is found to increase sharply with the drop size and the stirrer speed while decreasing sharply with increase in the interfacial tension. It is also found to decrease with increase in the dispersed phase viscosity, though the dependence on the viscosity is weaker than on the other variables. The daughter drop distribution was found to be relatively insensitive to the stirrer speed and interfacial tension, but was found to depend on the dispersed phase viscosity. As the drop viscosity increases, the breakage becomes more erosive in nature, leading to a broader size distribution of daughter drops. Generalized correlations for the breakage rate and daughter-drop distribution which account for the effect of physical properties and experimental conditions are presented. These relations will be very useful in predicting the drop-size distributions in stirred dispersions. Models for the breakage functions are compared with those determined in this study and the model predictions of the transient-size distributions are compared with the experimental data. [References: 28]
机译:使用图像分析技术已通过实验测量了瞬态破损液滴尺寸分布。瞬态分布显示出自相似行为。破损率和子滴分布函数已使用逆问题方法确定,该方法利用了这种自相似性。反问题结果表明,破损率不是液滴大小的幂律函数。发现破损率随着液滴尺寸和搅拌器速度而急剧增加,而随着界面张力的增加而急剧下降。尽管对粘度的依赖性比对其他变量的依赖性弱,但是还发现其随着分散相粘度的增加而降低。发现子滴分布对搅拌器速度和界面张力相对不敏感,但是发现其取决于分散相的粘度。随着液滴粘度的增加,断裂本质上变得更容易侵蚀,从而导致子液滴的尺寸分布更宽。给出了断裂速率和子滴分布的广义相关性,这些相关性说明了物理性质和实验条件的影响。这些关系对于预测搅拌分散液中的液滴尺寸分布非常有用。将破损函数的模型与本研究确定的模型进行比较,并将瞬态尺寸分布的模型预测与实验数据进行比较。 [参考:28]

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