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首页> 外文期刊>Journal of Non-Newtonian Fluid Mechanics >Stokesian dynamics simulation of the role of hydrodynamic interactions on the behavior of a single particle suspending in a Newtonian fluid. Part 1. 1D flexible and rigid fibers
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Stokesian dynamics simulation of the role of hydrodynamic interactions on the behavior of a single particle suspending in a Newtonian fluid. Part 1. 1D flexible and rigid fibers

机译:流体动力学相互作用对牛顿流体中悬浮的单个颗粒行为的作用的斯托克斯动力学模拟。第1部分。一维柔性和刚性纤维

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摘要

As seen in textbooks of polymer physics, a linear polymer chain can be modeled as a filament of connected beads. This concept can also be adapted to fibers and, for example, flexible fibers can be modeled by considering a stretch force, bending and torsion torques with a non-slip condition between adjacent beads, following the particle simulation method. In predicting fiber motions and their relating rheological properties, the importance of hydrodynamic interactions should be analyzed, so in this work we study the effect of hydrodynamic interactions on the behavior of a single flexible fiber under shear using Stokesian dynamics simulation with a 11. N× 11 N mobility matrix, where N is the aspect ratio of the fiber. Our results indicate that hydrodynamic interaction becomes significant when the fiber is highly flexible.
机译:如在高分子物理学的教科书中所见,可以将线性聚合物链建模为相连珠粒的细丝。该概念还可以适用于纤维,例如,可以按照粒子模拟方法,通过考虑相邻小珠之间的防滑条件下的拉伸力,弯曲和扭转扭矩来对柔性纤维进行建模。在预测纤维运动及其相关的流变特性时,应分析流体动力相互作用的重要性,因此在这项工作中,我们使用Stokesian动力学模拟(11 N)研究了流体动力相互作用对单根柔性纤维在剪切作用下的行为的影响。 11 N迁移率矩阵,其中N是纤维的纵横比。我们的结果表明,当纤维具有高柔韧性时,水动力相互作用变得非常重要。

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