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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 2. 2D flexible and rigid rings
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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 2. 2D flexible and rigid rings

机译:流体动力学相互作用对牛顿流体中单个颗粒悬浮行为的作用的斯托克斯动力学模拟。第2部分。2D柔性和刚性环

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In this work, a Stokesian Dynamics simulation, which considers deformation due to induced flows, was performed in order to analyze the behavior of a ring-shaped particle in a Newtonian fluid under shear as well as corresponding rheological properties in the absence of Brownian motion. The following results are obtained: (1) the tumbling orbit is kept when ring is rigid, whereas the normal direction of the ring is the independent of the initial state after a large strain when the ring is flexible. (2) When the ring is flexible, there are two states under shear: a stable state, showing a constant tilt angle, and an unstable state, showing a tumbling motion. (3) When the ring is semi-flexible, in steady-state, i.e., after a large strain, a bi-axial nematic phase is predicted when the system is dilute.
机译:在这项工作中,进行了Stokesian动力学模拟,该模拟考虑了归因于流动的变形,以便分析牛顿流体在剪切作用下环状颗粒的行为以及在不存在布朗运动的情况下的相应流变特性。得到以下结果:(1)当环为刚性时,保持翻滚轨道,而当环为柔性时,环的法线方向与大应变后的初始状态无关。 (2)当环是挠性的时,处于剪切状态有两种状态:显示倾斜角恒定的稳定状态和显示翻滚运动的不稳定状态。 (3)当环是半柔性的,在稳态下,即在大应变之后,当系统变稀时,预测为双轴向列相。

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