论文标题

颗粒介质中水平振荡活性物质的水槽式动力学:理论

Sink-rise dynamics of horizontally oscillating active matter in granular media: Theory

论文作者

Ping, Liu, Ran, Xianwen, Blumenfeld, Raphael

论文摘要

进行主动物质行为的建模行为的一个中间步骤是了解活跃对象(AOS)与无生命物质的相互作用,这通常会导致一系列丰富的行为。我们提出了一系列模拟自我强化的AO与三维颗粒物的相互作用,并开发了一种原理理论模型来描述观察到的现象。 AO水平振荡,这会导致其在重力或下沉,具体取决于振荡幅度和频率。我们确定了驱动垂直运动的两种竞争机制。当AO移动到临界速度($ v_c $)时,它会在其前面产生一个堵塞的停滞区,从而影响向上的力并导致上升。高于$ v_c $和某些动力学能量,AO流体周围的介质和AO陷入了支撑它的层中。上升和下沉阶段的持续时间非凡取决于AO的振幅和频率,导致复杂的非线性动力学。我们从第一原理中得出了时间相关深度的运动方程,并表明其解决方案与广泛的计算机仿真相吻合,我们在模拟系统的有限性允许的参数范围内执行。

An intermediate step to modelling behaviour of active matter is understanding interactions of active objects (AOs) with inanimate matter, which often lead to a range of rich behaviour. We present a range of simulations of the interaction of a self-energised AO with three-dimensional granular matter and develop a first-principles theoretical model to describe the observed phenomena. The AO oscillates horizontally, which causes it to either rise against gravity or sink, depending on the oscillation amplitude and frequency. We identify two competing mechanisms that drive the vertical motion. When the AO moves below a critical speed, $v_c$, it generates a jammed stagnant zone ahead of it, which effects an upward force and leads to the rise. Above $v_c$ and certain kinetic energy, the medium around the AO fluidises and the AO sinks into the layer supporting it. The duration of the rising and sinking phases depend non-trivially on the AO's amplitude and frequency leading to an intricate nonlinear dynamics. We derive the equation of motion for the time-dependent depth from first-principles and show that its solutions agree well with a wide range of computer simulations, which we perform within the range of parameters allowed by the finiteness of the simulated system.

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