论文标题
部分可观测时空混沌系统的无模型预测
Object Transport by a Confined Active Suspension
论文作者
论文摘要
两个空间维度中的数值模拟用于检查中性浮动圆形物体的动力学,传输和平衡行为,这些圆形物体沉浸在较大的闭合圆形容器中。 Gao等人的连续模型。 (Phys。Rev。Fluids,2017年)代表非相互作用,免疫,延伸型显微镜剂的悬浮液,它们具有方向和强度和强度和对应变速率的响应。众所周知,这种悬浮液在活动强度阈值之上不稳定,这取决于约束的长度尺度。引入对象会导致其他现象学。它可以限制其与容器壁之间的流体,从而抑制局部悬架活动。但是,其运动还将其表面附近的应变速率与伴随的活动应力反应相关。根据悬浮活性强度,这些机制导致对容器壁的吸引或排斥。此外,发现适度的活动强度的持续传播行为,这为远程运输提供了一种机制。当活动如此弱,以至于物体的迁移率对于支持悬浮不稳定性和维持流动至关重要时,当物体靠近容器壁时,物体本质上是停放和所有流动终止的。这些机制共同说明了使用简单的活性药物执行相对复杂任务的潜力,尤其是在时间安排活动强度的情况下。
Numerical simulations in two space dimensions are used to examine the dynamics, transport, and equilibrium behaviors of a neutrally buoyant circular object immersed in an active suspension within a larger closed circular container. The continuum model of Gao et al. (Phys. Rev. Fluids, 2017) represents the suspension of non-interacting, immotile, extensor-type microscopic agents that have a direction and strength and align in response to strain rate. Such a suspension is well known to be unstable above an activity strength threshold, which depends upon the length scale of the confinement. Introducing the object leads to additional phenomenology. It can confine fluid between it and the container wall, which suppresses local suspension activity. However, its motion also correlates strain rates near its surface with a concomitant correlated active-stress response. Depending on the suspension activity strength, these mechanisms lead to either an attraction toward or repulsion away from the container wall. In addition, a persistent propagating behavior is found for modest activity strength, which provides a mechanism for long-range transport. When activity is so weak that the mobility of the object is essential to support suspension instability and sustain flow, the object essentially parks and all flow terminates when its mobility is diminished as it nears the container wall. Together these mechanisms illustrate potential for performing relatively complex tasks with simple active agents, especially if activity strength is scheduled in time.