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Numerical Investigation on Hydrodynamic Performance of Flapping Plates with Non-Uniform Spanwise Flexibility Using Fluid Structure Interaction

机译:使用流体结构相互作用具有非均匀灌注柔性的拍平板流体动力性能的数值研究

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Fluid structure interactions (FSI) in biological propulsions are commonly observed in nature. For example, fish caudal fins and cetacean flukes. It is commonly believed the flexibility of the propulsors helps with the thrust producing and improves the swimming efficiency. However, the effects of non-uniform spanwise flexibility on the hydrodynamic performance of flexible propulsors are still elusive. In this paper, a strong coupling FSI solver was developed to study the hydrodynamic performance of flexible flapping plates with nonuniform spanwise flexibility. The flow field was computed using an in-house immersed boundary method (IBM) based direct numerical simulation (DNS) solver, and the structural dynamics was solved using an open source FEM code. The FSI solver was validated against the experimental data of a flexible flapping plate. The FSI solver was then used to simulate square flapping plates with different non-uniform distributions of spanwise flexibility that was achieved by changing the thickness ratio, τ, between the center and the tip of the plate. It was found non-uniform spanwise flexibility has a significant impact on the hydrodynamic performance of the plates. Specifically, the mean thrust increased with an increasing thickness ratio within the chosen range of τ between τ = 1 and 7. The hydrodynamic power consumption reached its minimum value and the propulsive efficiency reached its maximum value at τ = 3.
机译:生物推进中的流体结构相互作用(FSI)本质上观察到。例如,鱼尾鳍和鲸类氟尿布。通常相信推进器的灵活性有助于推力产生并提高游泳效率。然而,对柔性推进器的流体动力学性能的非均匀灌注灵活性的影响仍然难以捉摸。在本文中,开发了一种强耦合FSI解器,以研究具有非均匀枝条柔性的柔性拍打板的流体动力学性能。使用基于内部浸没的边界方法(IBM)的直接数值模拟(DNS)求解器计算流场,并且使用开源有限元编码解决了结构动态。根据柔性拍打板的实验数据验证FSI求解器。然后,FSI求解器用于模拟具有通过改变板之间的厚度比和板之间的厚度比τττ的跨柔性柔性分布的不同的不均匀分布。发现不均匀的枝条柔韧性对板的流体动力学性能产生显着影响。具体地,平均推力随着τ= 1和7之间的所选τ的τ的τ的厚度比增加而增加。流体动力功耗达到其最小值,并且推进效率在τ= 3处达到其最大值。

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