School of Mechanical and Electrical Engineering, Gui Lin University of Electronic Technology, Gui Lin 541004, China.
School of Mathematics, University of Bristol, Bristol BS8 1TW, England, United Kingdom and Department of Applied Mathematics and Theoretical Physics, University of Cambridge, Cambridge CB30WA, England, United Kingdom.
Phys Rev E. 2018 Jan;97(1-1):013109. doi: 10.1103/PhysRevE.97.013109.
We consider the motion of a gravity-driven flow down a vertical fiber subjected to a radial electric field. This flow exhibits rich dynamics including the formation of droplets, or beads, driven by a Rayleigh-Plateau mechanism modified by the presence of gravity as well as the Maxwell stress at the interface. A spatiotemporal stability analysis is performed to investigate the effect of electric field on the absolute-convective instability (AI-CI) characteristics. We performed a numerical simulation on the nonlinear evolution of the film to examine the transition from CI to AI regime. The numerical results are in excellent agreement with the spatiotemporal stability analysis. The blowup behavior of nonlinear simulation predicts the formation of touchdown singularity of the interface due to the effect of electric field. We try to connect the blowup behavior with the AI-CI characteristics. It is found that the singularities mainly occur in the AI regime. The results indicate that the film may have a tendency to form very sharp tips due to the enhancement of the absolute instability induced by the electric field. We perform a theoretical analysis to study the behaviors of the singularities. The results show that there exists a self-similarity between the temporal and spatial distances from the singularities.
我们研究了在垂直纤维上受径向电场作用的重力驱动流动的运动。这种流动表现出丰富的动力学特性,包括由瑞利-普兰特尔机制驱动的液滴或珠粒的形成,该机制被重力以及界面处的麦克斯韦应力所修正。进行了时空稳定性分析,以研究电场对绝对对流不稳定性(AI-CI)特性的影响。我们对薄膜的非线性演化进行了数值模拟,以检查从 CI 到 AI 状态的转变。数值结果与时空稳定性分析非常吻合。非线性模拟的爆破行为预测了由于电场的影响,界面形成触地奇点。我们试图将爆破行为与 AI-CI 特性联系起来。结果表明,奇点主要出现在 AI 状态。结果表明,由于电场引起的绝对不稳定性增强,薄膜可能有形成非常尖锐尖端的趋势。我们进行了理论分析来研究奇点的行为。结果表明,奇点处的时间和空间距离之间存在自相似性。