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Numerical Simulation of Deformation / Motion of a Drop Suspended In Viscous Liquids Under Influence of Steady Electric Fields

机译:稳态电场影响下粘液中粘液液体变形/运动的数值模拟

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The deformation / motion of a droplet suspended in a viscous liquid under the influence of an applied external electrical field are investigated through numerical simulations. The two-phase flow field of the drop suspension system is simulated using a front tracking / finite volume method for solving the full Navier-Stokes equations. Three different electric field models are applied in order to take into account the effects of the electric field, electric charge, and electrical properties of liquids. Drops with no net charge but finite electrical conductivity are simulated using a leaky dielectric model. Perfect dielectric model is used for the drops of electrically isolating fluid. To take into account the presence of a net charge on drop surface, we proposed a simplified constant surface charge model. In addition, the simulation code using the leaky dielectric model and perfect dielectric model is validated systematically against the results of theoretical analysis, the available experimental data, and the simulations by other researchers. It shows that the proposed numerical method (front tracking / finite volume method coupled with various electric field models) can make reasonable prediction on droplet deformation / motion under externally applied electrical field. Under different combinations of liquid properties, the droplets may deform into either prolate or oblate shape, and induce different inner and outer circulating flow patterns. When a net charge presents on the droplet surface and an electrical field is applied, both droplet deformation and motion can be reasonably predicted by the constant charge model. The simulation results demonstrate that the current numerical method may provide an effective approach to quantitatively analyze the complex electrohydrodynamic problems.
机译:通过数值模拟研究悬浮在施加的外部电场影响下粘液液中的液滴的变形/运动。使用前跟踪/有限体积方法模拟液滴悬架系统的两相流场,用于求解完整的Navier-Stokes方程。应用三种不同的电场模型,以考虑液体的电场,电荷和电气性能的影响。没有净充电但使用泄漏电介质模型模拟有限电导率的液滴。完美的介电模型用于电隔离液滴。考虑到滴表面上净电荷的存在,我们提出了一种简化的恒定表面电荷模型。另外,使用泄漏介质模型和完善的介电模型的仿真码系统地验证了其他研究人员的理论分析,可用实验数据和模拟的结果。它表明,所提出的数值方法(与各种电场模型耦合的前跟踪/有限体积法)可以对外部应用电场下的液滴变形/运动进行合理预测。在不同的液体性能组合下,液滴可以使扁平或扁平形状变形,并诱导不同的内循环流动图案。当施加液滴表面和电场上的净电荷显示时,可以通过恒定电荷模型合理预测液滴变形和运动。仿真结果表明,目前的数值方法可以提供有效的方法来定量分析复杂的电流动力学问题。

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