Hydrodynamics of a disk in a thin film of weakly nematic fluid subject to linear friction.

IF 2.3 4区 物理与天体物理 Q3 PHYSICS, CONDENSED MATTER
Abdallah Daddi-Moussa-Ider, Elsen Tjhung, Thomas Richter, Andreas M Menzel
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Abstract

To make progress towards the development of a theory on the motion of inclusions in thin structured films and membranes, we here consider as an initial step a circular disk in a two-dimensional, uniaxially anisotropic fluid layer. We assume overdamped dynamics, incompressibility of the fluid, and global alignment of the axis of anisotropy. Motion within this layer is affected by additional linear friction with the environment, for instance, a supporting substrate. We investigate the induced flows in the fluid when the disk is translated parallel or perpendicular to the direction of anisotropy. Moreover, expressions for corresponding mobilities and resistance coefficients of the disk are derived. Our results are obtained within the framework of a perturbative expansion in the parameters that quantify the anisotropy of the fluid. Good agreement is found for moderate anisotropy when compared to associated results from finite-element simulations. At pronounced anisotropy, the induced flow fields are still predicted qualitatively correctly by the perturbative theory, although quantitative deviations arise. We hope to stimulate with our investigations corresponding experimental analyses, for example, concerning fluid flows in anisotropic thin films on uniaxially rubbed supporting substrates.

受到线性摩擦的弱向列流体薄膜中圆盘的流体力学。
为了在发展结构薄膜和膜中夹杂物运动理论方面取得进展,我们在此首先考虑二维单轴各向异性流体层中的圆盘。我们假定存在过阻尼动力学、流体不可压缩性和各向异性轴的全局对齐。该层内的运动会受到与环境(例如支撑基底)的额外线性摩擦的影响。我们研究了当圆盘平行或垂直于各向异性方向平移时流体中的诱导流。此外,我们还推导出了圆盘的相应流动性和阻力系数的表达式。我们的结果是在对流体各向异性进行量化的参数进行扰动扩展的框架内得出的。与有限元模拟的相关结果相比,我们发现在中等各向异性的情况下,两者的结果非常一致。在明显各向异性的情况下,微扰理论对诱导流场的预测仍然定性正确,但出现了定量偏差。我们希望通过我们的研究激发相应的实验分析,例如有关各向异性薄膜在单轴摩擦支撑基底上的流体流动的实验分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Physics: Condensed Matter
Journal of Physics: Condensed Matter 物理-物理:凝聚态物理
CiteScore
5.30
自引率
7.40%
发文量
1288
审稿时长
2.1 months
期刊介绍: Journal of Physics: Condensed Matter covers the whole of condensed matter physics including soft condensed matter and nanostructures. Papers may report experimental, theoretical and simulation studies. Note that papers must contain fundamental condensed matter science: papers reporting methods of materials preparation or properties of materials without novel condensed matter content will not be accepted.
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