Research Article

Numerical Analysis of Variable Morphing Wing for Improved Aerodynamic Performance of a Predator MQ-1B

Volume: 03 Number: 02 December 29, 2022
EN

Numerical Analysis of Variable Morphing Wing for Improved Aerodynamic Performance of a Predator MQ-1B

Abstract

In this paper, aerodynamic performance benefits of morphing unmanned aerial vehicle’s wing concepts are investigated. A Predator MQ-1B with variable wing structure was utilized for this study. The concept consists of variable twist (-10°< θ <10°, in steps of ±2.5°) and wing sweep (0°< θ <30°, in steps of +10°) to illustrate morphing wing’s performance benefits. All computations were performed with Athena Vortex Lattice modelling with varying degrees of twist and sweep angle considered. The results obtained from this work show that if morphing wings adapted to the Predator MQ-1B, it will provide significant performance benefits and also offer a great opportunity to reduce fuel consumption.

Keywords

References

  1. Abdulrahim, M. et al. (2005) ‘Flight Testing A Micro Air Vehicle Using Morphing For Aeroservoelastic Control’, Journal of Aircraft, 42, No 1(January-February), pp. 1–17. doi:10.2514/6.2004-1674.
  2. AIRBUS (2020) AlbatrossOne: A revolutionary approach to aircraft wing design. Available at: https://www.airbus.com/innovation/future-concepts/biomimicry/albatross one .html (Accessed: 9 July 2021).
  3. Austin, R. (2010) Unmanned Aircraft Systems – UAVs design, development and deployment. Aerospace series, Wiley and Sons Ltd publication.
  4. Barbarino, S. et al. (2011) ‘A Review of Morphing Aircraft’, Journal of Intelligent Material Systems and Structures, 22(9), pp. 823–877. doi:10.1177/1045389X11414084.
  5. Barbarino, S. et al. (2014) ‘A review on shape memory alloys with applications to morphing aircraft’, Smart Materials and Structures, 23(6), pp. 063001--. doi:10.1088/0964-1726/23/6/063001.
  6. Bourdin, P., Gatto, A.. and Friswell, M. (2006) ‘The Application of Variable Cant Angle Winglets for Morphing Aircraft Control’, in 24th Applied Aerodynamics Conference. American Institute of Aeronautics and Astronautics, Inc, pp. 1–13.
  7. Bourdin, P., Gatto, A. and Friswell, M.I. (2007) ‘Potential of Articulated Split Wingtips for Morphing-Based Control of a Flying Wing’, in 25th AIAA Applied Aerodynamics Conference, pp. 1–16.
  8. Culick, F.E.C. (2003) ‘The Wright Brothers : First Aeronautical Engineers’, 41(6), pp. 8–11.

Details

Primary Language

English

Subjects

Aerospace Engineering

Journal Section

Research Article

Publication Date

December 29, 2022

Submission Date

August 30, 2022

Acceptance Date

September 23, 2022

Published in Issue

Year 2022 Volume: 03 Number: 02

APA
Kaygan, E. (2022). Numerical Analysis of Variable Morphing Wing for Improved Aerodynamic Performance of a Predator MQ-1B. International Journal of Aviation Science and Technology, 03(02), 70-80. https://izlik.org/JA67XU77MH
AMA
1.Kaygan E. Numerical Analysis of Variable Morphing Wing for Improved Aerodynamic Performance of a Predator MQ-1B. IJAST. 2022;03(02):70-80. https://izlik.org/JA67XU77MH
Chicago
Kaygan, Erdogan. 2022. “Numerical Analysis of Variable Morphing Wing for Improved Aerodynamic Performance of a Predator MQ-1B”. International Journal of Aviation Science and Technology 03 (02): 70-80. https://izlik.org/JA67XU77MH.
EndNote
Kaygan E (December 1, 2022) Numerical Analysis of Variable Morphing Wing for Improved Aerodynamic Performance of a Predator MQ-1B. International Journal of Aviation Science and Technology 03 02 70–80.
IEEE
[1]E. Kaygan, “Numerical Analysis of Variable Morphing Wing for Improved Aerodynamic Performance of a Predator MQ-1B”, IJAST, vol. 03, no. 02, pp. 70–80, Dec. 2022, [Online]. Available: https://izlik.org/JA67XU77MH
ISNAD
Kaygan, Erdogan. “Numerical Analysis of Variable Morphing Wing for Improved Aerodynamic Performance of a Predator MQ-1B”. International Journal of Aviation Science and Technology 03/02 (December 1, 2022): 70-80. https://izlik.org/JA67XU77MH.
JAMA
1.Kaygan E. Numerical Analysis of Variable Morphing Wing for Improved Aerodynamic Performance of a Predator MQ-1B. IJAST. 2022;03:70–80.
MLA
Kaygan, Erdogan. “Numerical Analysis of Variable Morphing Wing for Improved Aerodynamic Performance of a Predator MQ-1B”. International Journal of Aviation Science and Technology, vol. 03, no. 02, Dec. 2022, pp. 70-80, https://izlik.org/JA67XU77MH.
Vancouver
1.Erdogan Kaygan. Numerical Analysis of Variable Morphing Wing for Improved Aerodynamic Performance of a Predator MQ-1B. IJAST [Internet]. 2022 Dec. 1;03(02):70-8. Available from: https://izlik.org/JA67XU77MH

Please find the article preperation and structure guides in author guidelines section.
Please do not hasitate to contact with us in here.