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自推进粒子与壁面的流体动力学相互作用:活性 Janus 粒子与蠕动模型的比较。

Hydrodynamic interaction of a self-propelling particle with a wall : Comparison between an active Janus particle and a squirmer model.

作者信息

Shen Zaiyi, Würger Alois, Lintuvuori Juho S

机构信息

Univ. Bordeaux, CNRS, LOMA, UMR 5798, F-33405, Talence, France.

出版信息

Eur Phys J E Soft Matter. 2018 Mar 27;41(3):39. doi: 10.1140/epje/i2018-11649-0.

Abstract

Using lattice Boltzmann simulations we study the hydrodynamics of an active spherical particle near a no-slip wall. We develop a computational model for an active Janus particle, by considering different and independent mobilities on the two hemispheres and compare the behaviour to a standard squirmer model. We show that the topology of the far-field hydrodynamic nature of the active Janus particle is similar to the standard squirmer model, but in the near-field the hydrodynamics differ. In order to study how the near-field effects affect the interaction between the particle and a flat wall, we compare the behaviour of a Janus swimmer and a squirmer near a no-slip surface via extensive numerical simulations. Our results show generally a good agreement between these two models, but they reveal some key differences especially with low magnitudes of the squirming parameter [Formula: see text]. Notably the affinity of the particles to be trapped at a surface is increased for the active Janus particles when compared to standard squirmers. Finally, we find that when the particle is trapped on the surface, the velocity parallel to the surface exceeds the bulk swimming speed and scales linearly with [Formula: see text].

摘要

通过格子玻尔兹曼模拟,我们研究了无滑移壁附近活性球形颗粒的流体动力学。我们通过考虑两个半球上不同且独立的迁移率,开发了一种活性双面颗粒的计算模型,并将其行为与标准的蠕动模型进行比较。我们表明,活性双面颗粒远场流体动力学性质的拓扑结构与标准蠕动模型相似,但在近场中流体动力学有所不同。为了研究近场效应如何影响颗粒与平壁之间的相互作用,我们通过广泛的数值模拟比较了双面游动体和蠕动体在无滑移表面附近的行为。我们的结果总体上表明这两个模型之间有很好的一致性,但它们也揭示了一些关键差异,特别是在蠕动参数[公式:见正文]值较低时。值得注意的是,与标准蠕动体相比,活性双面颗粒被困在表面的亲和力增加。最后,我们发现当颗粒被困在表面时,平行于表面的速度超过整体游动速度,并与[公式:见正文]成线性比例。

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