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On the Perturbation of the Three-Dimensional Stokes Flow of Micropolar Fluids by a Constant Uniform Magnetic Field in a Circular Cylinder

机译:恒定均匀磁场在圆柱体中对微极性流体三维斯托克斯流的扰动

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摘要

Modern engineering technology involves the micropolar magnetohydrodynamic flow of magnetic fluids. Here, we consider a colloidal suspension of non-conductive ferromagnetic material, which consists of small spherical particles that behave as rigid magnetic dipoles, in a carrier liquid of approximately zero conductivity and low-Reynolds number properties. The interaction of a 3D constant uniform magnetic field with the three-dimensional steady creeping motion (Stokes flow) of a viscous incompressible micropolar fluid in a circular cylinder is investigated, where the magnetization of the ferrofluid has been taken into account and the magnetic Stokes partial differential equations have been presented. Our goal is to apply the proper boundary conditions, so as to obtain the flow fields in a closed analytical form via the potential representation theory, and to study several characteristics of the flow. In view of this aim, we make use of an improved new complete and unique differential representation of magnetic Stokes flow, valid for non-axisymmetric geometries, which provides the velocity and total pressure fields in terms of easy-to-find potentials. We use these results to simulate the creeping flow of a magnetic fluid inside a circular duct and to obtain the flow fields associated with this kind of flow.
机译:现代工程技术涉及磁流体的微极磁流体动力学流动。在这里,我们考虑一种非导电铁磁材料的胶体悬浮液,它由具有近似零电导率和低雷诺数特性的载液中的小球形颗粒组成,这些小球形颗粒充当刚性磁偶极子。研究了3D恒定均匀磁场与粘性不可压缩微极性流体在圆柱中的三维稳态蠕变运动(斯托克斯流)的相互作用,其中考虑了铁磁流体的磁化,并且磁斯托克斯磁提出了微分方程。我们的目标是应用适当的边界条件,以便通过势能表示理论以封闭的分析形式获得流场,并研究流的若干特征。鉴于此目标,我们利用改进的磁斯托克斯流的全新完整且独特的微分表示法,适用于非轴对称几何形状,从而以易于发现的电位提供速度和总压力场。我们使用这些结果来模拟圆形管道内的磁性流体的蠕变流动,并获得与这种流动相关的流场。

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