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On the Three Dimensional Interaction between Flexible Fibers and Fluid Flow

机译:柔性纤维与流体流动的三维相互作用

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摘要

In this paper we discuss the deformation of a flexible fiber clamped to a spherical body and immersed in a flow of fluid moving with a speed ranging between 0 and 50 cm/s by means of three dimensional numerical simulation developed in COMSOL . The effects of flow speed and initial configuration angle of the fiber relative to the flow are analyzed. A rigorous analysis of the numerical procedure is performed and our code is benchmarked against well established cases. The flow velocity and pressure are used to compute drag forces upon the fiber. Of particular interest is the behavior of these forces as a function of the flow speed and fiber orientation. The Vogel exponents, which characterize the rate of bending of a fiber in a flow, are found for the various configurations examined here and seem to display interesting variations. These exponents are then compared with our previously studied two-dimensional models.
机译:本文通过COMSOL开发的三维数值模拟,讨论了固定在球形体上的柔性纤维的变形并浸没在速度在0至50 cm / s之间的流体中。分析了流速和纤维初始构型角相对于流动的影响。对数值过程进行了严格的分析,并且我们的代码针对完善的案例进行了基准测试。流速和压力用于计算纤维上的阻力。这些力的行为与流速和纤维取向有关,这是特别令人感兴趣的。在这里检查的各种配置中都可以找到表征纤维在流中的弯曲速率的Vogel指数,并且似乎显示出有趣的变化。然后将这些指数与我们先前研究的二维模型进行比较。

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