Supeene Graeme, Koch Charles R, Bhattacharjee Subir
Department of Mechanical Engineering, 4-9 Mechanical Engineering Building, University of Alberta, Edmonton, AB, T6G 2G8, Canada.
J Colloid Interface Sci. 2008 Feb 15;318(2):463-76. doi: 10.1016/j.jcis.2007.10.022. Epub 2007 Oct 18.
Deformation of a fluid drop, suspended in a second immiscible fluid, under the influence of an imposed electric field is a widely studied phenomenon. In this paper, the system is analyzed numerically to assess its dynamic behavior. The response of the system to a step change in the electric field is simulated for both perfect and leaky dielectric systems, exploring the influence of the fluid, interfacial, and electrical properties on the system dynamics. For the leaky dielectric case, the dynamic build up of the free charge at the interface, including the effects of convection along the interface due to electrohydrodynamic circulation, is investigated. The departure of the system from linear perturbation theory is explained using these dynamic simulations. The present simulations are compared with analytic solutions, as well as available experimental results, indicating that the predictions from the model are reliable even at considerably large deformations.
悬浮在第二种不混溶流体中的液滴,在施加电场的影响下发生变形,这是一个受到广泛研究的现象。本文对该系统进行了数值分析,以评估其动态行为。针对完美电介质系统和漏电介质系统,模拟了系统对电场阶跃变化的响应,探讨了流体、界面和电学性质对系统动力学的影响。对于漏电介质情况,研究了界面处自由电荷的动态积累,包括由于电流体动力学循环沿界面的对流效应。利用这些动态模拟解释了系统与线性微扰理论的偏差。将当前的模拟结果与解析解以及现有的实验结果进行了比较,表明即使在相当大的变形情况下,该模型的预测也是可靠的。