首页> 外文学位 >The role of dispersed phase concentration in the deformation and breakup of oil-in-water emulsions under flow.
【24h】

The role of dispersed phase concentration in the deformation and breakup of oil-in-water emulsions under flow.

机译:分散相浓度在流动条件下在水包油型乳液的形变和破裂中的作用。

获取原文
获取原文并翻译 | 示例

摘要

This thesis investigates the role of dispersed phase concentration on the drop deformation and breakup process of oil-in-water emulsions under flow. This work is motivated by two earlier studies: one by Mason & Bibette [4], on concentrated viscoelastic emulsions, which became monodisperse under the application of a simple shear flow, and a second, by Aronson [5], where a similar emulsion became monodisperse in a complex mixing flow.; In the first part of the thesis, we study the effect of changing surfactant concentration, dispersed phase concentration and flow rate on the Aronson emulsion and two other oil-in-water emulsions. We find that emulsions in a mixing flow only become monodisperse around the close packing oil concentration of 70%. Increasing mixer speed and surfactant concentration decreases the polydispersity. Final mean drop sizes follow the same trend as the polydispersity. Qualitatively similar results are obtained by subjecting the emulsions to a simple shear flow.; In the second part of the thesis, we directly visualize drop breakup in a concentrated emulsion. We used a model emulsion of castor oil in aqueous maltose in a simple shear flow, over an oil concentration range of 2--75%. Above 20% oil concentration, we observe qualitative changes in the deformation process. Instead of deforming into well-defined cylindrical threads, drops deform into convoluted shapes, with fluid accumulating unevenly along the drop length. The end-pinching instability is also suppressed with increasing concentration. The time to breakup for the drops becomes increasingly independent of initial drop size with increasing concentration until at around the close packing volume fraction, all the drops in the emulsion break together.
机译:本文研究了分散相浓度对流动条件下水包油型乳剂液滴变形和破裂过程的影响。这项工作是由两项较早的研究推动的:一项是由Mason&Bibette [4]研究的浓缩粘弹性乳液,它在简单剪切流作用下变成了单分散性,另一项是由Aronson [5]提出的,类似的乳液变成了在复杂的混合流中单分散。在论文的第一部分,我们研究了改变表面活性剂浓度,分散相浓度和流速对Aronson乳液和另外两种水包油乳液的影响。我们发现,混合流中的乳液仅在密堆积油浓度为70%左右才变得单分散。增加混合器速度和表面活性剂浓度会降低多分散性。最终平均液滴大小遵循与多分散性相同的趋势。通过使乳液经受简单的剪切流而获得定性相似的结果。在论文的第二部分,我们直接观察浓缩乳液中的液滴破裂。我们使用蓖麻油的模型乳液在简单的剪切流中于麦芽糖水溶液中,油的浓度范围为2--75%。高于20%的油浓度,我们在变形过程中观察到质的变化。液滴不会变形为轮廓分明的圆柱螺纹,而是变形为盘旋形状,流体沿着液滴长度不均匀地积聚。随着浓度的增加,还可以抑制端部收缩的不稳定性。随着浓度的增加,液滴破裂的时间变得越来越不依赖于初始液滴大小,直到在接近堆积体积分数时,乳液中的所有液滴一起破裂。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号