Holloway C R, Cupples G, Smith D J, Green J E F, Clarke R J, Dyson R J
School of Mathematics, University of Birmingham, Birmingham B15 2TT, UK.
Institute for Metabolism and Systems Research, University of Birmingham, Birmingham B15 2TT, UK.
R Soc Open Sci. 2018 Aug 15;5(8):180456. doi: 10.1098/rsos.180456. eCollection 2018 Aug.
Suspensions of self-motile, elongated particles are a topic of significant current interest, exemplifying a form of 'active matter'. Examples include self-propelling bacteria, algae and sperm, and artificial swimmers. Ericksen's model of a transversely isotropic fluid (Ericksen 1960 , 117-122 (doi:10.1007/bf01502416)) treats suspensions of non-motile particles as a continuum with an evolving preferred direction; this model describes fibrous materials as diverse as extracellular matrix, textile tufts and plant cell walls. Director-dependent effects are incorporated through a modified stress tensor with four viscosity-like parameters. By making fundamental connections with recent models for active suspensions, we propose a modification to Ericksen's model, mainly the inclusion of self-motility; this can be considered the simplest description of an oriented suspension including transversely isotropic effects. Motivated by the fact that transversely isotropic fluids exhibit modified flow stability, we conduct a linear stability analysis of two distinct cases, aligned and isotropic suspensions of elongated active particles. Novel aspects include the anisotropic rheology and translational diffusion. In general, anisotropic effects increase the instability of small perturbations, while translational diffusion stabilizes a range of wave-directions and, in some cases, a finite range of wavenumbers, thus emphasizing that both anisotropy and translational diffusion can have important effects in these systems.
自驱动的细长颗粒悬浮液是当前一个备受关注的主题,它是“活性物质”的一种形式。例子包括自推进的细菌、藻类和精子,以及人造游动体。埃里克森的横向各向同性流体模型(埃里克森,1960年,第117 - 122页(doi:10.1007/bf01502416))将非运动颗粒的悬浮液视为具有不断演变的优先方向的连续介质;该模型描述了诸如细胞外基质、纺织簇和植物细胞壁等多种纤维材料。通过具有四个类似粘度参数的修正应力张量纳入了与方向相关的效应。通过与活性悬浮液的最新模型建立基本联系,我们对埃里克森的模型提出了一种修正,主要是纳入了自运动性;这可以被认为是包含横向各向同性效应的定向悬浮液的最简单描述。鉴于横向各向同性流体表现出修正的流动稳定性,我们对细长活性颗粒的排列和各向同性悬浮液这两种不同情况进行了线性稳定性分析。新的方面包括各向异性流变学和平动扩散。一般来说,各向异性效应会增加小扰动的不稳定性,而平动扩散会稳定一系列波方向,在某些情况下还会稳定一个有限的波数范围,从而强调各向异性和平动扩散在这些系统中都可能产生重要影响。