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A thixotropic fluid flow around two sequentially aligned spheres

机译:触变性流体围绕两个顺序排列的球体流动

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We studied the thixotropic-hydrodynamic interaction of particles resulting from a combination of external flow conditions and intrinsic thixotropy of a fluid. As a model system, a low Reynolds number Moore thixotropic fluid flow around two sequentially aligned sphere was simulated using the standard Galerkin finite element method. The drag coefficients of each sphere were used to quantitively characterize the thixotropic-hydrodynamic interaction between the two spheres. First, hydrodynamic interaction change according to the external flow condition was identified at a fixed distance. Subsequently, the parametric analysis was extended to incorporate the effect of the geometrical condition, the sphere-sphere distance parameter. This yields a conceptual map that distinguishes the thixotropic-hydrodynamic interaction into three different types: the geometric hydrodynamic interaction, combination of geometric and local thixotropic interaction, and global thixotropic-hydrodynamic interaction.
机译:我们研究了由外部流动条件的组合和流体的内在触变性引起的颗粒 - 流体动力学相互作用。作为模型系统,使用标准Galerkin有限元方法模拟两个顺序对准球体周围的低雷诺数Moore触变性流体。每个球体的拖曳系数用于定量表征两个球体之间的触变性水动力学相互作用。首先,根据固定距离鉴定了根据外部流动条件的流体动力相互作用变化。随后,扩展了参数分析以结合几何状况,球形距离参数的效果。这产生了一种概念图,将触变性 - 流体动力学相互作用区分成三种不同类型:几何流体动力学相互作用,几何和局部触变性相互作用的组合,以及全局触变性 - 流体动力学相互作用。

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