Insights into Sensitivity of Wing Shape and Kinematic Parameters Relative to Aerodynamic Performance of Flapping Wing Nano Air Vehicles

被引:8
作者
Throneberry, G. [1 ]
Hassanalian, M. [2 ]
Abdelkefi, A. [1 ]
机构
[1] New Mexico State Univ, Dept Mech & Aerosp Engn, Las Cruces, NM 88003 USA
[2] New Mexico Inst Min & Technol, Dept Mech Engn, Socorro, NM 87801 USA
关键词
flapping wing; nano air vehicle; wing shape; flapping kinematic; hovering;
D O I
10.3390/drones3020049
中图分类号
TP7 [遥感技术];
学科分类号
081102 ; 0816 ; 081602 ; 083002 ; 1404 ;
摘要
In this work, seven wings inspired from insects' wings, including those inspired by the bumblebee, cicada, cranefly, fruitfly, hawkmoth, honeybee, and twisted parasite, are patterned and analyzed in FlapSim software in forward and hovering flight modes for two scenarios, namely, similar wingspan (20 cm) and wing surface (0.005 m(2)). Considering their similar kinematics, the time histories of the aerodynamic forces of lift, thrust, and required mechanical power of the inspired wings are calculated, shown, and compared for both scenarios. The results obtained from FlapSim show that wing shape strongly impacts the performance and aerodynamic characteristics of the chosen seven wings. To study the effects of different geometrical and physical factors including flapping frequency, elevation amplitude, pronation amplitude, stroke-plane angle, flight speed, wing material, and wingspan, several analyses are carried out on the honeybee-inspired shape, which had a 20 cm wingspan. This study can be used to evaluate the efficiency of different bio-inspired wing shapes and may provide a guideline for comparing the performance of flapping wing nano air vehicles with forward flight and hovering capabilities.
引用
收藏
页码:1 / 24
页数:24
相关论文
共 50 条
  • [21] Experimental Analysis of Driveline Performance of Flapping Wing Nano-robots
    Timmermans, Siemen
    Roelandt, Thomas
    Vandepitte, Dirk
    2022 NEW TRENDS IN CIVIL AVIATION (NTCA), 2022, : 11 - 17
  • [22] Experimental optimization of wing shape for a hummingbird-like flapping wing micro air vehicle
    Nan, Yanghai
    Karasek, Matej
    Lalami, Mohamed Esseghir
    Preumont, Andre
    BIOINSPIRATION & BIOMIMETICS, 2017, 12 (02)
  • [23] Aerodynamic performance of low aspect-ratio flapping wing with active wing-chord adjustment
    Cong, Longfei
    Teng, Bin
    Chen, Lifen
    Bai, Wei
    Jin, Ruijia
    Chen, Biaosong
    JOURNAL OF FLUIDS AND STRUCTURES, 2023, 122
  • [24] Development of elastomeric flight muscles for flapping wing micro air vehicles
    Lau, Gih-Keong
    Chin, Yao-Wei
    La, Thanh-Giang
    ELECTROACTIVE POLYMER ACTUATORS AND DEVICES (EAPAD) 2017, 2017, 10163
  • [25] Aspect Ratio Effects on the Aerodynamic Performance of a Biomimetic Hummingbird Wing in Flapping
    Min, Yilong
    Zhao, Gengyao
    Pan, Dingyi
    Shao, Xueming
    BIOMIMETICS, 2023, 8 (02)
  • [26] The Effect of Spanwise Folding on the Aerodynamic Performance of a Passively Deformed Flapping Wing
    Qi, Ming
    Ding, Menglong
    Zhu, Wenguo
    Li, Shu
    BIOMIMETICS, 2024, 9 (01)
  • [27] Experimental investigation on aerodynamic performance of a flapping wing vehicle in forward flight
    Mazaheri, K.
    Ebrahimi, A.
    JOURNAL OF FLUIDS AND STRUCTURES, 2011, 27 (04) : 586 - 595
  • [28] Modeling and evaluation of power transmission of flapping wing nano air vehicle
    Bontemps, Alexandre
    Grondel, Sebastien
    Vanneste, Thomas
    Dupont, Samuel
    Cattan, Eric
    2014 IEEE/ASME 10TH INTERNATIONAL CONFERENCE ON MECHATRONIC AND EMBEDDED SYSTEMS AND APPLICATIONS (MESA 2014), 2014,
  • [29] Test of aerodynamic modeling accuracy of bird-scale flapping-wing vehicles
    Zheng H.
    Wang J.
    Hu Z.
    Zhang Z.
    He G.
    Hangkong Xuebao/Acta Aeronautica et Astronautica Sinica, 2023, 44 (10):
  • [30] Optimum Aeroelastic Design of Resonance Type Flapping Wing for Micro Air Vehicles
    Isogai, Koji
    Kamisawa, Yuichi
    Sato, Hiroyuki
    TRANSACTIONS OF THE JAPAN SOCIETY FOR AERONAUTICAL AND SPACE SCIENCES, 2010, 52 (178) : 238 - 245