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Capillary interactions between dynamically forced particles adsorbed at a planar interface and on a bubble

机译:吸附在平面界面和气泡上的动态受迫颗粒之间的毛细管相互作用

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摘要

We investigate the dynamic interfacial deformation induced by micrometric particles exerting a periodic force on a planar interface or on a bubble, and the resulting lateral capillary interactions. Assuming that the deformation of the interface is small, neglecting the effect of viscosity, and assuming point particles, we derive analytical formulas for the dynamic deformation of the interface. For the case of a planar interface the dynamic point force simply generates capillary waves, while for the case of a bubble it excites shape oscillations, with a dominat deformation mode that depends on the bubble radius for a given forcing frequency. We evaluate the lateral capillary force acting between two particles, by superimposing the deformations induced by two point forces. We find that the lateral capillary forces experienced by dynamically forced particles are non monotonic and can be repulsive. The results are applicable to micrometric particles driven by different dynamic forcing mechanisms such as magnetic, electric or acoustic fields.
机译:我们研究了由微米级颗粒在平面界面或气泡上施加周期性力而引起的动态界面变形,以及由此产生的横向毛细管相互作用。假设界面的变形很小,忽略了粘度的影响,并假设存在点粒子,我们导出了界面的动态变形的解析公式。对于平面界面,动态点力仅产生毛细波,而对于气泡,它会激发形状振荡,在给定的强制频率下,主变形模式取决于气泡半径。我们通过叠加由两点力引起的变形来评估作用在两个粒子之间的横向毛细作用力。我们发现动态受迫颗粒经历的横向毛细作用力是非单调的并且可以排斥。该结果适用于由不同的动态强迫机制(例如磁场,电场或声场)驱动的微米级颗粒。

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  • 期刊名称 other
  • 作者

    M. De Corato; V. Garbin;

  • 作者单位
  • 年(卷),期 -1(847),-1
  • 年度 -1
  • 页码 71–92
  • 总页数 29
  • 原文格式 PDF
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