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The shape oscillations of drops and bubbles in the presence of surfactants.

机译:在表面活性剂存在下,液滴和气泡的形状振荡。

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This thesis presents analytical expressions for the frequencies and damping constants for small-amplitude axisymmetric shape oscillations of a liquid drop suspended in an immiscible fluid host in microgravity. In particular, this work addresses large Reynolds number shape oscillations and focuses on the surface rheological effects that arise from the presence of insoluble surfactants at the interface. Parameters characterizing viscous effects from the bulk phases, surface viscous effects, Marangoni effects from the surface advection and diffusion of surfactants, and the Gibbs elasticity are all considered and analyzed to determine the relative importance of each contribution.; Supplementing the analytical treatment for small-amplitude oscillations, a numerical boundary integral equation formulation is developed for the study of large-amplitude axisymmetric oscillations of a drop in vacuum. The boundary integral formulation is an extension of classical potential flow theory and approximately accounts for viscous effects in the bulk fluid as well as the surface viscous and Marangoni effects resulting from an insoluble surfactant contaminating the interface.; Theoretical and numerical results are presented for four distinct cases. These range from the case when the effects of the surfactants are “negligible” to “large” when compared to the viscous effects in the bulk phases. The feasibility of the non-contact measurement of the surface parameters, using experimental observations for the oscillation frequencies and damping constants of drops and bubbles, is discussed.
机译:本文提出了微重力下悬浮在不溶混流体中的液滴的小振幅轴对称形状振荡的频率和阻尼常数的解析表达式。特别地,这项工作解决了大的雷诺数形状振荡,并着重研究了由于界面处存在不溶性表面活性剂而引起的表面流变效应。考虑并分析了表征相的粘性效应,表面粘性效应,表面平流和表面活性剂的马兰戈尼效应以及吉布斯弹性的参数,以确定每种贡献的相对重要性。作为对小振幅振荡的分析处理的补充,开发了一种数值边界积分方程公式,用于研究真空下降的大振幅轴对称振荡。边界积分公式是经典势流理论的扩展,大约解释了整体流体中的粘性效应以及不溶性表面活性剂污染界面引起的表面粘性和马兰戈尼效应。给出了四种不同情况的理论和数值结果。与在本体相中的粘性作用相比,当表面活性剂的作用“可忽略”到“大”时,这些范围不等。讨论了使用实验观测到的液滴和气泡的振动频率以及阻尼常数进行非接触式表面参数测量的可行性。

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