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Combined co-rotational beam/shell elements for fluid-structure interaction analysis of insect-like flapping wing

机译:组合共旋转梁/壳体元件,用于昆虫型扑翼的流体结构相互作用分析

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摘要

Flapping wing micro-air vehicles are biologically inspired by nature flyers, specifically insects and birds. Specifically, insect wings generally consist of veins and membrane components. In this study, a structural analysis considering the vein/membrane components of an insect-like flapping wing is presented. Co-rotational (CR) finite elements are adopted in order to consider the complex wing configuration including both vein and membrane. The CR beam elements with warping degrees of freedom are employed for veins and CR shell elements for the wing membrane. The present structural analysis is verified against the analytical results obtained by an existing software, and it is validated by comparison to existing results from the literature. A fluid-structure interaction analysis is then performed. In the procedure, an aerodynamic analysis based on three-dimensional preconditioned Navier-Stokes equations is employed. Finally, a comparative study with respect to the structural characteristics is conducted. As a result, an efficiency of the present structural analysis is confirmed by comparing with the existing software. It is found that the present FSI results are in good agreement with the existing experimental and numerical results. Moreover, the passive wing twist may have a significant influence on the hover performance.
机译:拍打翼微空气汽车是由自然传单的生物学启发,特别是昆虫和鸟类。具体而言,昆虫翅膀通常由静脉和膜组分组成。在该研究中,考虑了考虑昆虫样拍翼的静脉/膜组分的结构分析。采用共旋转(CR)有限元件,以考虑包括静脉和膜的复杂翼形构型。具有翘曲自由度的Cr光束元件用于翼膜的静脉和Cr壳元件。根据现有软件获得的分析结果验证了本结构分析,并通过与文献的现有结果进行验证。然后进行流体结构相互作用分析。在该过程中,采用基于三维预处理的Navier-Stokes方程的空气动力学分析。最后,对结构特征进行了比较研究。结果,通过与现有软件相比,确认本结构分析的效率。结果发现,目前的FSI结果与现有的实验和数值效果吻合良好。此外,无源翼捻可能对悬停性能产生显着影响。

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