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受限通道活性向列相的流动转变与长度尺度

Flow transitions and length scales of a channel-confined active nematic.

作者信息

Samui Abhik, Yeomans Julia M, Thampi Sumesh P

机构信息

Department of Physics, Indian Institute of Technology Madras, Chennai 600036, India.

The Rudolf Peierls Centre for Theoretical Physics, Clarendon Laboratory, Parks Road, Oxford, OX1 3PU, UK.

出版信息

Soft Matter. 2021 Dec 8;17(47):10640-10648. doi: 10.1039/d1sm01434j.

Abstract

We perform lattice Boltzmann simulations of an active nematic fluid confined in a two-dimensional channel to study the range of flow states that are stabilised by the confinement: unidirectional flow, oscillatory flow, the dancing state, localised active turbulence and fully-developed active turbulence. We analyse the flows in Fourier space, and measure a range of different length scales which describe the flows. We argue that the different states occur as a result of flow instabilities inherent to the system. As a consequence the characteristic length scale for oscillatory flow, the dancing state and localised active turbulence is set by the channel width. Fully-developed active turbulence occurs only when the channel width is larger than the intrinsic, active length scale of the bulk fluid. The results clarify why the activity number is a control parameter for the flow transitions.

摘要

我们对限制在二维通道中的活性向列型流体进行格子玻尔兹曼模拟,以研究由限制作用所稳定的流动状态范围:单向流动、振荡流动、舞动状态、局部活性湍流和充分发展的活性湍流。我们在傅里叶空间中分析这些流动,并测量一系列描述流动的不同长度尺度。我们认为不同的状态是由系统固有的流动不稳定性导致的。因此,振荡流动、舞动状态和局部活性湍流的特征长度尺度由通道宽度设定。只有当通道宽度大于主体流体的固有活性长度尺度时,才会出现充分发展的活性湍流。这些结果阐明了为什么活性数是流动转变的控制参数。

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