Analytical results on the role of flexibility in flapping propulsion

被引:54
|
作者
Moore, M. Nicholas J. [1 ,2 ,3 ]
机构
[1] NYU, Courant Inst Math Sci, New York, NY 10012 USA
[2] Florida State Univ, Dept Math, Tallahassee, FL 32306 USA
[3] NYU, Inst Geophys Fluid Dynam, New York, NY 10012 USA
关键词
propulsion; swimming/flying; vortex shedding; FLIGHT; PERFORMANCE; EFFICIENCY; AIRFOIL; DESIGN; WINGS;
D O I
10.1017/jfm.2014.533
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Wing or fin flexibility can dramatically affect the performance of flying and swimming animals Both laboratory experiments and numerical simulations have been used to study these effects, but analytical results are notably lacking. Here, we develop small-amplitude theory to model a flapping wing that pitches passively due to a combination of wing compliance, inertia and fluid forces. Remarkably, we obtain a class of exact solutions describing the wing's emergent pitching motions, along with expressions for how thrust and efficiency are modified by compliance. The solutions recover a range of realistic behaviours and shed new light on how flexibility can aid performance, the importance of resonance, and the separate roles played by wing and fluid inertia. The simple robust estimates afforded by our theory may prove valuable even in situations where details of the flapping motion and wing geometry differ.
引用
收藏
页码:599 / 612
页数:14
相关论文
共 50 条
  • [21] The mechanism of flapping propulsion of an underwater glider
    李永成
    潘定一
    马峥
    [J]. Journal of Hydrodynamics, 2016, 28 (05) : 918 - 921
  • [22] Propulsion efficiency of flapping flight robots
    Zhao, Longfei
    Shang, Yaoxing
    Jiao, Zongxia
    [J]. 2017 IEEE INTERNATIONAL CONFERENCE ON CYBERNETICS AND INTELLIGENT SYSTEMS (CIS) AND IEEE CONFERENCE ON ROBOTICS, AUTOMATION AND MECHATRONICS (RAM), 2017, : 76 - 81
  • [23] Aerodynamic effects of flexibility in flapping wings
    Zhao, Liang
    Huang, Qingfeng
    Deng, Xinyan
    Sane, Sanjay P.
    [J]. JOURNAL OF THE ROYAL SOCIETY INTERFACE, 2010, 7 (44) : 485 - 497
  • [24] Analytical results for pitching kinematics and propulsion performance of flexible foil
    Du, Feng
    Wu, Jianghao
    [J]. JOURNAL OF FLUID MECHANICS, 2024, 979
  • [25] Linearized propulsion theory of flapping airfoils revisited
    Fernandez-Feria, R.
    [J]. PHYSICAL REVIEW FLUIDS, 2016, 1 (08):
  • [26] Numerical Study of Flexible Flapping Wing Propulsion
    Yang, Tao
    Wei, Mingjun
    Zhao, Hong
    [J]. AIAA JOURNAL, 2010, 48 (12) : 2909 - 2915
  • [27] Intertwined vorticity and elastodynamics in flapping wing propulsion
    Mysa, Ravi C.
    Venkatraman, Kartik
    [J]. JOURNAL OF FLUID MECHANICS, 2016, 787 : 175 - 223
  • [28] OPTIMUM PITCHING AXES IN FLAPPING WING PROPULSION
    YATES, GT
    [J]. JOURNAL OF THEORETICAL BIOLOGY, 1986, 120 (03) : 255 - 276
  • [29] Propulsion via flexible flapping in granular media
    Peng, Zhiwei
    Ding, Yang
    Pietrzyk, Kyle
    Elfring, Gwynn J.
    Pak, On Shun
    [J]. PHYSICAL REVIEW E, 2017, 96 (01)
  • [30] Analyses and simulations of propulsion mechanisms for Flapping wings with the extension of Undulate Propulsion Theory
    Sun, Xiaohui
    Zhao, Longfei
    Jiao, Zongxia
    [J]. 2016 IEEE CHINESE GUIDANCE, NAVIGATION AND CONTROL CONFERENCE (CGNCC), 2016, : 1794 - 1799