Yu Zongxin, Christov Ivan C
School of Mechanical Engineering, Purdue University, West Lafayette, Indiana 47907, USA.
Phys Rev E. 2021 Jan;103(1-1):013103. doi: 10.1103/PhysRevE.103.013103.
Two-dimensional free surface flows in Hele-Shaw configurations are a fertile ground for exploring nonlinear physics. Since Saffman and Taylor's work on linear instability of fluid-fluid interfaces, significant effort has been expended to determining the physics and forcing that set the linear growth rate. However, linear stability does not always imply nonlinear stability. We demonstrate how the combination of a radial and an azimuthal external magnetic field can manipulate the interfacial shape of a linearly unstable ferrofluid droplet in a Hele-Shaw configuration. We show that weakly nonlinear theory can be used to tune the initial unstable growth. Then, nonlinearity arrests the instability and leads to a permanent deformed droplet shape. Specifically, we show that the deformed droplet can be set into motion with a predictable rotation speed, demonstrating nonlinear traveling waves on the fluid-fluid interface. The most linearly unstable wave number and the combined strength of the applied external magnetic fields determine the traveling wave shape, which can be asymmetric.
在Hele-Shaw结构中的二维自由表面流动是探索非线性物理学的一片沃土。自从萨夫曼和泰勒关于流体-流体界面线性不稳定性的研究工作以来,人们已经付出了巨大努力来确定决定线性增长率的物理机制和驱动力。然而,线性稳定性并不总是意味着非线性稳定性。我们展示了径向和方位角外部磁场的组合如何在Hele-Shaw结构中操纵线性不稳定铁磁流体液滴的界面形状。我们表明,弱非线性理论可用于调节初始不稳定增长。然后,非线性抑制了不稳定性并导致液滴形状永久变形。具体而言,我们表明变形后的液滴可以以可预测的旋转速度运动,这证明了流体-流体界面上存在非线性行波。最线性不稳定波数和外加外部磁场的组合强度决定了行波形状,该形状可能是不对称的。