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首页> 外文期刊>Journal of Colloid and Interface Science >Emulsification in turbulent flow 2.Breakage rate constants
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Emulsification in turbulent flow 2.Breakage rate constants

机译:湍流中的乳化作用2.破损率常数

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Systematic experimental study of the effects of several factors on the breakage rate constant,k_(BR),during emulsification in turbulent flow is performed.These factors are the drop size,interfacial tension,viscosity of the oil phase,and rate of energy dissipation in the flow.As starting oil-water premixes we use emulsions containing monodisperse oil drops,which have been generated by the method of membrane emulsification.By passing these premixes through a narrow-gap homogenizer,working in turbulent regime of emulsification,we study the evolution of the number concentration of the drops with given diameter,as a function of the emulsification time.The experimental data are analyzed by a kinetic scheme,which takes into account the generation of drops of a given size (as a result of breakage of larger drops) and their disappearance (as a result of their own breakage process).The experimental results for k_(BR) are compared with theoretical expressions from the literature and their modifications.The results for all systems could be described reasonably well by an explicit expression,which is a product of;(a) the frequency of collisions between drops and turbulent eddies of similar size,and (b) the efficiency of drop breakage,which depends on the energy required for drop deformation.The drop deformation energy contains two contributions,originating from the drop surface extension and from the viscous dissipation inside the breaking drop.In the related subsequent paper,the size distribution of the daughter drops formed in the process of drop breakage is analyzed for the same experimental systems.
机译:在湍流乳化过程中,进行了几个因素对破乳率常数k_(BR)的影响的系统实验研究。这些因素包括液滴尺寸,界面张力,油相粘度和油耗能量的消耗率。作为起始的油水预混物,我们使用通过膜乳化方法生成的含单分散油滴的乳液。通过使这些预混物通过窄间隙均质器,在湍流的乳化条件下工作,我们研究了其演变过程。给定直径的液滴数量浓度随乳化时间的变化。通过动力学方案分析实验数据,该方案考虑了给定尺寸的液滴的产生(较大液滴破裂的结果) )以及它们的消失(由于它们自身的破裂过程).k_(BR)的实验结果与文献中的理论表达式及其修改进行了比较所有系统的结果都可以用一个明确的表达式来很好地描述,它是以下各项的乘积:(a)液滴与相似大小的湍流之间的碰撞频率,以及(b)液滴破裂的效率,取决于液滴变形所需的能量。液滴变形能量包含两个贡献,这是由液滴表面延伸和破裂液滴内部的粘性耗散引起的。在随后的相关论文中,在此过程中形成的子液滴的尺寸分布对于相同的实验系统,分析了液滴断裂的程度。

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