Aeroelastic behaviour of a flexible morphing wing design for unmanned aerial vehicle

被引:0
|
作者
Farhad Sabri
Assem Elzaabalawy
S. A. Meguid
机构
[1] University of Toronto,Mechanics and Aerospace Design Laboratory, Department of Mechanical and Industrial Engineering
[2] Australian College of Kuwait,Department of Mechanical Engineering
来源
Acta Mechanica | 2022年 / 233卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Static aeroelastic analysis of a flexible morphing wing design for an unmanned aerial vehicle (UAV) subjected to different flight mission profiles is investigated. The considered morphing wing design, accounting for wing flexural and torsional stiffness as well as rigid body dynamics for varied flight scenarios, was developed using a consistent lumped mass approach. Specifically, a two-dimensional strip model is used to calculate the quasi-steady aerodynamic forces and moments acting on the morphed wing. The resulting aeroelastic equations are then integrated numerically using a fourth order Runge–Kutta scheme to establish the time history of the wing for the considered various flight scenarios. Discrete gust input in the time domain is introduced to simulate the wing response to this perturbation. The presented numerical results provide an effective physical insight into the behavior of the morphed wing under different geometrical configurations and are useful for the design of the actuation system, flight controller, and gust alleviation.
引用
收藏
页码:851 / 867
页数:16
相关论文
共 50 条
  • [21] X-HALE: A Very Flexible Unmanned Aerial Vehicle for Nonlinear Aeroelastic Tests
    Cesnik, Carlos E. S.
    Senatore, Patrick J.
    Su, Weihua
    Atkins, Ella M.
    Shearer, Christopher M.
    AIAA JOURNAL, 2012, 50 (12) : 2820 - 2833
  • [22] H∞ Control Design for Active Flutter Suppression of Flexible-Wing Unmanned Aerial Vehicle Demonstrator
    Waitman, Sergio
    Marcos, Andres
    JOURNAL OF GUIDANCE CONTROL AND DYNAMICS, 2020, 43 (04) : 656 - 672
  • [23] Intermittent Gliding Flight Control Design and Verification of a Morphing Unmanned Aerial Vehicle
    Yao, Zheng
    Wu, Sentang
    IEEE ACCESS, 2019, 7 : 40991 - 41005
  • [24] Boundary control for an unmanned aerial vehicle with a nonhomogeneous rigid–flexible coupling wing
    Fu, Yun
    Xiao, Ao
    Liu, Bei
    Yu, Yunjun
    Huang, Yushui
    Wan, Xiaofeng
    Gongcheng Kexue Xuebao/Chinese Journal of Engineering, 2024, 46 (09): : 1574 - 1581
  • [25] Design and experiment of a multimodal aerial aquatic vehicle with morphing wing and tilting rotors
    Xia, Minghai
    Wang, Baocai
    Luo, Zirong
    ADVANCES IN MECHANICAL ENGINEERING, 2025, 17 (02)
  • [26] Design and implementation of an unmanned aerial vehicle with self-propulsive wing
    Kasem, Abdelrahman
    Gamal, Ahmad
    Hany, Amr
    Gaballa, Hesham
    Ahmed, Karim
    Romany, Mina
    Abdelkawy, Mohamed
    Abdelrahman, Mohamed M.
    ADVANCES IN MECHANICAL ENGINEERING, 2019, 11 (06)
  • [27] Optimization design of composite wing structure of a minitype Unmanned Aerial Vehicle
    Zhang, Yan
    Xiong, Fenfen
    Yang, Shuxing
    Mei, Xiaoning
    ADVANCED MANUFACTURING TECHNOLOGY, PTS 1, 2, 2011, 156-157 : 1532 - 1536
  • [28] Multidisciplinary Design Optimization of Long Endurance Unmanned Aerial Vehicle Wing
    Rajagopal, S.
    Ganguli, Ranjan
    CMES-COMPUTER MODELING IN ENGINEERING & SCIENCES, 2011, 81 (01): : 1 - 34
  • [29] Design and fabrication of a fixed-wing Unmanned Aerial Vehicle (UAV)
    El Adawy, Mohammed
    Abdelhalim, Elhassan H.
    Mahmoud, Mohannad
    Zeid, Mohamed Ahmed Abo
    Mohamed, Ibrahim H.
    Othman, Mostafa M.
    ElGamal, Gehad S.
    ElShabasy, Yahia H.
    AIN SHAMS ENGINEERING JOURNAL, 2023, 14 (09)
  • [30] Multidisciplinary design optimization of long endurance unmanned aerial vehicle wing
    Rajagopal, S.
    Ganguli, Ranjan
    CMES - Computer Modeling in Engineering and Sciences, 2011, 81 (01): : 1 - 34