Modeling and simulation of a novel autonomous underwater vehicle with glider and flapping-foil propulsion capabilities

被引:6
|
作者
Tian Wen-long [1 ]
Song Bao-wei [1 ]
Du Xiao-xu [1 ]
Mao Zhao-yong [1 ]
Ding Hao [1 ]
机构
[1] Northwestern Polytech Univ, Sch Marine Engn, Xian 710072, Peoples R China
关键词
modeling; simulation; underwater glider; flapping foil; BUOYANCY;
D O I
10.1007/s13344-012-0046-9
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
HAISHEN is a long-ranged and highly maneuverable AUV which has two operating modes: glider mode and flapping-foil propulsion mode. As part of the vehicle development, a three-dimensional mathematical model of the conceptual vehicle was developed on the assumption that HAISHEN has a rigid body with two independently controlled oscillating hydrofoils. A flapping-foil model was developed based on the work done by Georgiades et al. (2009). Effect of controllable hydrofoils on the vehicle stable motion performance was studied theoretically. Finally, a dynamics simulation of the vehicle in both operating modes is created in this paper. The simulation demonstrates that: (1) in the glider mode, owing to the independent control of the pitch angle of each hydrofoil, HAISHEN travels faster and more efficiently and has a smaller turning radius than conventional fix-winged gliders; (2) in the flapping-foil propulsion mode, HAISHEN has a high maneuverability with a turning radius smaller than 15 m and a forward motion velocity about 1.8 m/s; (3) the vehicle is stable under all expected operating conditions.
引用
收藏
页码:603 / 622
页数:20
相关论文
共 50 条
  • [1] Modeling and Simulation of A Novel Autonomous Underwater Vehicle with Glider and Flapping-Foil Propulsion Capabilities
    田文龙
    宋保维
    杜晓旭
    毛昭勇
    丁浩
    China Ocean Engineering, 2012, 26 (04) : 603 - 622
  • [2] Modeling and simulation of a novel autonomous underwater vehicle with glider and flapping-foil propulsion capabilities
    Wen-long Tian
    Bao-wei Song
    Xiao-xu Du
    Zhao-yong Mao
    Hao Ding
    China Ocean Engineering, 2012, 26 : 603 - 622
  • [3] Hydrodynamics Experimental Setup for Flapping-Foil Propulsion
    Ding, Hao
    Song, Baowei
    Tian, Wenlong
    Le, Huangyong
    EMERGING RESEARCH IN ARTIFICIAL INTELLIGENCE AND COMPUTATIONAL INTELLIGENCE, 2012, 315 : 9 - +
  • [4] The mechanism of flapping propulsion of an underwater glider
    Li, Yong-cheng
    Pan, Ding-yi
    Ma, Zheng
    JOURNAL OF HYDRODYNAMICS, 2016, 28 (05) : 918 - 921
  • [5] The mechanism of flapping propulsion of an underwater glider
    Yong-cheng Li
    Ding-yi Pan
    Zheng Ma
    Journal of Hydrodynamics, 2016, 28 : 918 - 921
  • [6] The mechanism of flapping propulsion of an underwater glider
    李永成
    潘定一
    马峥
    JournalofHydrodynamics, 2016, 28 (05) : 918 - 921
  • [7] Hydrodynamic performance of flapping-foil propulsion in the influence of vortices
    Zhang X.
    Su Y.-M.
    Yang L.
    Wang Z.-L.
    Journal of Marine Science and Application, 2010, 9 (2) : 213 - 219
  • [8] Effect of Frequency-Amplitude Parameter and Aspect Ratio on Propulsion Performance of Underwater Flapping-Foil
    Ding, Hao
    Chen, Ruoqian
    Zhu, Yawei
    Shen, Huipeng
    Gao, Qiang
    BIOMIMETICS, 2024, 9 (06)
  • [9] Aspect Ratio Effect of a Pair of Flapping Wings on the Propulsion of a Bionic Autonomous Underwater Glider
    Li, Yongcheng
    Pan, Dingyi
    Ma, Zheng
    Zhao, Qiaosheng
    JOURNAL OF BIONIC ENGINEERING, 2019, 16 (01) : 145 - 153
  • [10] Aspect Ratio Effect of a Pair of Flapping Wings on the Propulsion of a Bionic Autonomous Underwater Glider
    Yongcheng Li
    Dingyi Pan
    Zheng Ma
    Qiaosheng Zhao
    Journal of Bionic Engineering, 2019, 16 : 145 - 153