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Numerical prediction of fiber motion in a branching channel flow of fiber suspensions

机译:纤维悬浮液分支流中纤维运动的数值预测

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Fiber orientation and dispersion in the dilute fibersuspension that flows through a T-shaped branching channel are simulated numerically based on the slender-body theory. The simulated results are consistent qualitatively with the experimental data available in the literature. The results show that the spatial distribution of fibers is dependent on the fiber aspect ratio, but has no relation with the volume fraction of fiber. The content ratio of fibers near the upper wall increases monotonically with an increasing Re number, and the situation is reverse for the region near the bottom wall.The orientation of fibers depends on Re number, however, the function of fiber volume fraction and aspect ratio is negligible. The fibers near the wall and in the central region of the channel align along the flow direction at all times, but the fibers in the other parts of the channel tend to align along the flow direction only in the downstream region.
机译:基于细长体理论,对通过T形分支通道流动的稀纤维悬浮液中的纤维取向和分散进行了数值模拟。仿真结果在质量上与文献中提供的实验数据一致。结果表明,纤维的空间分布取决于纤维的长径比,但与纤维的体积分数无关。上壁附近的纤维含量比随Re数的增加而单调增加,而底壁附近区域的情况则相反。纤维的取向取决于Re数,但是纤维体积分数和长宽比的作用可以忽略不计。壁附近和通道中央区域中的纤维始终沿流动方向排列,但通道其他部分中的纤维往往仅在下游区域中沿流动方向排列。

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