Valani Rahil N, Slim Anja C, Simula Tapio P
School of Physics and Astronomy, Monash University, Victoria 3800, Australia.
School of Mathematics, Monash University, Victoria 3800, Australia.
Phys Rev E. 2021 Apr;103(4-1):043102. doi: 10.1103/PhysRevE.103.043102.
Vertically vibrating a liquid bath at two frequencies, f and f/2, having a constant relative phase difference can give rise to self-propelled superwalking droplets on the liquid surface. We have numerically investigated such superwalking droplets in the regime where the phase difference varies slowly with time. We predict the emergence of stop-and-go motion of droplets, consistent with experimental observations [Valani et al. Phys. Rev. Lett. 123, 024503 (2019)PRLTAO0031-900710.1103/PhysRevLett.123.024503]. Our simulations in the parameter space spanned by the droplet size and the rate of traversal of the phase difference uncover three different types of droplet motion: back-and-forth, forth-and-forth, and irregular stop-and-go motion, which we explore in detail. Our findings lay a foundation for further studies of dynamically driven droplets, whereby the droplet's motion may be guided by engineering arbitrary time-dependent phase difference functions.
以两个频率f和f/2垂直振动液体浴,并保持恒定的相对相位差,可在液体表面产生自驱动的超级行走液滴。我们对相位差随时间缓慢变化的情况下的此类超级行走液滴进行了数值研究。我们预测液滴会出现走走停停的运动,这与实验观察结果一致[瓦拉尼等人,《物理评论快报》123, 024503 (2019年);PRLTAO0031 - 9007;10.1103/PhysRevLett.123.024503]。我们在由液滴大小和相位差遍历速率所构成的参数空间中的模拟,揭示了三种不同类型的液滴运动:来回运动、向前向前运动以及不规则的走走停停运动,我们对其进行了详细探究。我们的研究结果为进一步研究动态驱动液滴奠定了基础,通过设计任意随时间变化的相位差函数,液滴的运动可能会得到引导。