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首页> 外文期刊>Journal of Aerosol Science >Numerical research on the orientation distribution of fibers immersed in laminar and turbulent pipe flows.
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Numerical research on the orientation distribution of fibers immersed in laminar and turbulent pipe flows.

机译:浸入层流和湍流管中的纤维取向分布的数值研究。

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摘要

The spatal and orientational distributions of fibers in laminar and turbulent pipe flows are simulated numerically.The simulated results are consistent with the experimental data available in the literature.In the laminar flow regime,more fibers are aligned with the flow direction with increasing Reynolds numbers.The shear rate of fluid around a fibers are aligned with the flow direction with increasing Reynolds number.The shear rate of fluid around a fiber is the key factor for determining the orientation distribution of fibers.The fibers aspect ratio and fiber density have insignificant influence,while the fiber velocity and the fiber Stokes number have marginal influence,on the orientation distribution of fibers.In the turbulent regime,the spatial and orientational distributions become more homogeneous with increasing Reynolds number,and the fluctuation intensity of fiber velocity in teh streamwise direction is larger than that in the other two directions,in contrast to the fluctuation intensity of the fiber angular velocity,which is weaker in the other two directions,in contrast to the fluctuation intensity of the fiber angular velocity,which is weaker in the streamwise direction.
机译:对层流和湍流管中纤维的空间分布和取向进行了数值模拟。模拟结果与文献中的实验数据一致。在层流状态下,随着雷诺数的增加,更多的纤维与流向对齐。随着雷诺数的增加,纤维周围流体的剪切速率与流动方向一致。纤维周围流体的剪切速率是决定纤维取向分布的关键因素。纤维的长径比和纤维密度影响不大,纤维速度和纤维斯托克斯数对纤维的取向分布有边际影响。在湍流状态下,空间和取向分布随雷诺数的增加而变得更均匀,纤维速度沿流向的波动强度为相比于其他两个方向的波动更大纤维角速度的离子强度在其他两个方向上较弱,而纤维角速度的波动强度在流向上较弱。

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