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Effects of non-linear interfacial mechanics on the transient response of a drop to an external flow field.

机译:非线性界面力学对液滴对外部流场的瞬态响应的影响。

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摘要

The time-dependent response of a drop suspended in an axisymmetric extensional flow is studied. The dynamics of such multiphase systems is of interest in areas that include the petroleum, pharmaceutical, biomedical and food industries. The focus is on the role that a surfactant monolayer on the drop interface plays during the deformation and retraction processes. The steady-state characteristics and the bulk flow are analyzed for validation. The transient processes are simulated using an axisymmetric boundary integral method. At each time step the shape of the drop is determined based on the velocity of points at the interface and surfactant is redistributed accordingly.; The response time taus of drop deformation in an extensional flow was seen to depend monotonically on the initial surfactant coverage X on the interface. That is, higher X leads to increasing values of taus. In this sense, it was seen that Marangoni stresses developing on the interface due to surface tension gradients act to slow the response time of the drop.; Retraction of the drop when the external flow ceases is caused by an imbalance between the traction along the drop's interface and the shear stresses. Neglecting the initial stages, the retraction process can be closely approximated by an exponential decay. It was shown that the retraction time tau r depends non-monotonically on X. Small amounts of surfactant slow down the retraction process compared to that of the clean drop for X ≤ 0:5. Further increasing the surfactant concentration accelerates the retraction process and as X → 1, the value of taur approaches that of the clean drop. These dynamics emerge from the competition between the convective flux that creates the surfactant gradients and the large Marangoni stresses that develop to oppose them during the extension process. At low to intermediate surfactant concentrations, large surfactant gradients developed during the deformation process persist until equilibrium is reached because diffusion time is much longer than the retraction rate. At higher initial surfactant concentrations, lower surfactant gradients develop during deformation and these quickly vanish during the initial stages of retraction leading to a nearly uniform surface tension distribution along the interface.
机译:研究了悬浮在轴对称延伸流中的液滴的时间相关响应。在包括石油,制药,生物医学和食品工业的领域中,这种多相系统的动力学是令人感兴趣的。重点在于液滴界面上的表面活性剂单层在变形和收缩过程中所起的作用。分析稳态特性和总体流量以进行验证。使用轴对称边界积分方法模拟了瞬态过程。在每个时间步,液滴的形状都是基于界面处的点的速度来确定的,表面活性剂会相应地重新分布。可以看出,拉伸流中液滴变形的响应时间是单调地取决于界面上的初始表面活性剂覆盖率X。也就是说,较高的X导致taus值增加。从这个意义上说,可以看到由于表面张力梯度而在界面上形成的Marangoni应力会减慢液滴的响应时间。当外部流动停止时,液滴的回缩是由沿着液滴界面的牵引力与剪切应力之间的不平衡引起的。忽略初始阶段,收缩过程可以通过指数衰减来近似逼近。结果表明,回缩时间tau r非单调地取决于X。与X≤0:5的清洁液滴相比,少量表面活性剂会减慢回缩过程。进一步增加表面活性剂的浓度会加速缩回过程,并且当X→1时,taur的值接近清洁液滴的值。这些动力来自产生表面活性剂梯度的对流通量和在延伸过程中对冲通量所形成的对冲通量之间的竞争。在低到中等的表面活性剂浓度下,变形过程中形成的大表面活性剂梯度会持续存在,直到达到平衡为止,这是因为扩散时间长于收缩速率。在较高的初始表面活性剂浓度下,在变形过程中会形成较低的表面活性剂梯度,并且在回缩的初始阶段会迅速消失,从而导致沿界面的表面张力分布几乎均匀。

著录项

  • 作者

    Gonzalez-Mancera, Andres.;

  • 作者单位

    University of Maryland, Baltimore County.$bEngineering, Mechanical.;

  • 授予单位 University of Maryland, Baltimore County.$bEngineering, Mechanical.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 136 p.
  • 总页数 136
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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