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块状三维活性向列型湍流的谱能量分析

Spectral energy analysis of bulk three-dimensional active nematic turbulence.

作者信息

Krajnik Žiga, Kos Žiga, Ravnik Miha

机构信息

Faculty of Mathematics and Physics, University of Ljubljana, Jadranska 19, 1000 Ljubljana, Slovenia.

出版信息

Soft Matter. 2020 Sep 9. doi: 10.1039/c9sm02492a.

Abstract

We perform energy spectrum analysis of the active turbulence in a 3D bulk active nematic using continuum numerical modelling. Specifically, we calculate the spectra of the two main energy contributions - kinetic energy and nematic elastic energy - and combine this with the geometrical analysis of the nematic order and flow fields, based on direct defect tracking and calculation of autocorrelations. We show that the active nematic elastic energy is concentrated at scales corresponding to the effective defect-to-defect separation, scaling with activity as ∼ζ0.5, whereas the kinetic energy is largest at somewhat larger scales of typically several 100 nematic correlation lengths. Nematic biaxiality is shown to have no role in active turbulence at most length scales, but can affect the nematic elastic energy by an order of magnitude at scales of the active defect core size. The effect of an external aligning field on the 3D active turbulence is explored, showing a transition from an effective active turbulent to an aligned regime. The work is aimed at providing a contribution towards understanding active turbulence in general three-dimensions, from the perspective of main energy-relevant mechanisms at different length scales of the system.

摘要

我们使用连续介质数值模拟对三维体积极性向列相中的有源湍流进行能谱分析。具体而言,我们计算了两种主要能量贡献的谱——动能和向列弹性能,并基于直接缺陷跟踪和自相关计算,将其与向列序和流场的几何分析相结合。我们表明,活性向列弹性能集中在与有效缺陷间间距相对应的尺度上,随活性按 ∼ζ0.5 缩放,而动能在通常为几百个向列相关长度的稍大尺度上最大。结果表明,在大多数长度尺度下,向列双轴性在有源湍流中不起作用,但在活性缺陷核心尺寸的尺度上,它可使向列弹性能改变一个数量级。我们探讨了外部排列场对三维有源湍流的影响,展示了从有效有源湍流到排列状态的转变。这项工作旨在从系统不同长度尺度上的主要能量相关机制的角度,为理解一般三维空间中的有源湍流做出贡献。

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