Aerodynamics of Flapping Wings for Vertical Takeoff

The present study is based on analysing a flapping based locomotion in vertical direction which is inspired from jelly fish in vertical locomotion. A numerical investigation is performed to analyse the aerodynamic performance in terms of two dimensional flat plates under flapping conditions with the...

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Main Authors: G. C. Vishnu Kumar, D. A. Shah
Format: Article
Language:English
Published: Isfahan University of Technology 2017-01-01
Series:Journal of Applied Fluid Mechanics
Subjects:
Online Access:http://jafmonline.net/JournalArchive/download?file_ID=43824&issue_ID=245
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spelling doaj-9995658390714047b65c3037857d34f62020-11-25T02:34:11ZengIsfahan University of Technology Journal of Applied Fluid Mechanics1735-35722017-01-0110616891697.Aerodynamics of Flapping Wings for Vertical TakeoffG. C. Vishnu Kumar0D. A. Shah1Hindustan University,Hindustan universityThe present study is based on analysing a flapping based locomotion in vertical direction which is inspired from jelly fish in vertical locomotion. A numerical investigation is performed to analyse the aerodynamic performance in terms of two dimensional flat plates under flapping conditions with the fluid at rest. The model considered is an umbrella structure prototype which has vertical plates placed at certain intermittent distance from each other with their leading edges hinged. The dynamic effect of 2D plates are analysed by varying the chord length of flapper for a range of amplitude and frequency to study the interference effects of flappers in close proximity. It is found that a suitable chord length and intermittent distance is required for improving the aerodynamic characteristics. It is envisaged that the results obtained in this study will lead to better understanding of the dynamics of flapping based locomotion which are useful for developing hovering kinematics in surveillance and reconnaissance.http://jafmonline.net/JournalArchive/download?file_ID=43824&issue_ID=245Flapping; Flat plates; Numerical simulation; Vortex structure.
collection DOAJ
language English
format Article
sources DOAJ
author G. C. Vishnu Kumar
D. A. Shah
spellingShingle G. C. Vishnu Kumar
D. A. Shah
Aerodynamics of Flapping Wings for Vertical Takeoff
Journal of Applied Fluid Mechanics
Flapping; Flat plates; Numerical simulation; Vortex structure.
author_facet G. C. Vishnu Kumar
D. A. Shah
author_sort G. C. Vishnu Kumar
title Aerodynamics of Flapping Wings for Vertical Takeoff
title_short Aerodynamics of Flapping Wings for Vertical Takeoff
title_full Aerodynamics of Flapping Wings for Vertical Takeoff
title_fullStr Aerodynamics of Flapping Wings for Vertical Takeoff
title_full_unstemmed Aerodynamics of Flapping Wings for Vertical Takeoff
title_sort aerodynamics of flapping wings for vertical takeoff
publisher Isfahan University of Technology
series Journal of Applied Fluid Mechanics
issn 1735-3572
publishDate 2017-01-01
description The present study is based on analysing a flapping based locomotion in vertical direction which is inspired from jelly fish in vertical locomotion. A numerical investigation is performed to analyse the aerodynamic performance in terms of two dimensional flat plates under flapping conditions with the fluid at rest. The model considered is an umbrella structure prototype which has vertical plates placed at certain intermittent distance from each other with their leading edges hinged. The dynamic effect of 2D plates are analysed by varying the chord length of flapper for a range of amplitude and frequency to study the interference effects of flappers in close proximity. It is found that a suitable chord length and intermittent distance is required for improving the aerodynamic characteristics. It is envisaged that the results obtained in this study will lead to better understanding of the dynamics of flapping based locomotion which are useful for developing hovering kinematics in surveillance and reconnaissance.
topic Flapping; Flat plates; Numerical simulation; Vortex structure.
url http://jafmonline.net/JournalArchive/download?file_ID=43824&issue_ID=245
work_keys_str_mv AT gcvishnukumar aerodynamicsofflappingwingsforverticaltakeoff
AT dashah aerodynamicsofflappingwingsforverticaltakeoff
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