Role of wing morphing in thrust generation

In this paper, we investigate the role of morphing on flight dynamics of two birds by simulating the flow over rigid and morphing wings that have the characteristics of two different birds, namely the Giant Petrel and Dove Prion. The simulation of a flapping rigid wing shows that the root of the win...

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Bibliographic Details
Published in:Theoretical and Applied Mechanics Letters
Main Authors: Mehdi Ghommem, Muhammad R. Hajj, Philip S. Beran, Ishwar K. Puri
Format: Article in Journal/Newspaper
Language:English
Published: Elsevier 2014
Subjects:
Online Access:https://doi.org/10.1063/2.1403203
https://doaj.org/article/195e11cfe36c429da3fdd55feddec3c2
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Summary:In this paper, we investigate the role of morphing on flight dynamics of two birds by simulating the flow over rigid and morphing wings that have the characteristics of two different birds, namely the Giant Petrel and Dove Prion. The simulation of a flapping rigid wing shows that the root of the wing should be placed at a specific angle of attack in order to generate enough lift to balance the weight of the bird. However, in this case the generated thrust is either very small, or even negative, depending on the wing shape. Further, results show that morphing of the wing enables a significant increase in the thrust and propulsive efficiency. This indicates that the birds actually utilize some sort of active wing twisting and bending to produce enough thrust. This study should facilitate better guidance for the design of flapping air vehicles.