Numerical investigation of a bio-inspired underwater robot with skeleton-reinforced undulating fins

被引:24
|
作者
Shi, Guangyu [1 ]
Xiao, Qing [1 ]
机构
[1] Univ Strathclyde, Dept Naval Architecture Ocean & Marine Engn, Glasgow G4 0LZ, Lanark, Scotland
关键词
Ray-strengthened membrane; Undulating fin; Bio-inspired underwater robot; Fluid-structure interaction;
D O I
10.1016/j.euromechflu.2020.12.009
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
In this paper, the propulsion performance of a bio-inspired underwater robot with a pair of ray-supported undulating pectoral fins is numerically investigated with a fully coupled fluid-structure interaction model. In this model, the flexible fin rays are represented by nonlinear Euler-Bernoulli beams while the surrounding flow is simulated via solving the Navier-Stokes equations. Kinematically, each pectoral fin is activated independently via individually distributed time-varying forces along each fin ray, which imitate effects of tendons that can actively curve the fin rays. We find that the propulsion performance of the bio-inspired robot is closely associated with the phase difference between the leading edge ray and the trailing edge ray of the pectoral fin. The results show that with a symmetrical kinematics, the highest thrust is created when the phase difference is 90 degree while the point maximizing the propulsion efficiency varies with the motion frequency. It is also found that there is a minimum frequency of generating net thrust for a specific parameter setup, which rises as the increase of phase difference. Compared with the symmetrical kinematics, the non-symmetrical kinematics generates more complicated hydrodynamic forces and moments which may be beneficial for the turning maneuver. (C) 2020 Elsevier Masson SAS. All rights reserved.
引用
收藏
页码:75 / 91
页数:17
相关论文
共 50 条
  • [31] Bio-inspired Tensegrity Fish Robot
    Shintake, Jun
    Zappetti, Davide
    Peter, Timothee
    Ikemoto, Yusuke
    Floreano, Dario
    2020 IEEE INTERNATIONAL CONFERENCE ON ROBOTICS AND AUTOMATION (ICRA), 2020, : 2887 - 2892
  • [32] Multiple Bio-Inspired Father-Son Underwater Robot for Underwater Target Object Acquisition and Identification
    An, Ruochen
    Guo, Shuxiang
    Yu, Yuanhua
    Li, Chunying
    Awa, Tendeng
    MICROMACHINES, 2022, 13 (01)
  • [33] The Underwater Swimming Manipulator - A Bio-Inspired AUV
    Sverdrup-Thygeson, J.
    Kelasidi, E.
    Pettersen, K. Y.
    Gravdahl, J. T.
    2016 IEEE/OES AUTONOMOUS UNDERWATER VEHICLES (AUV), 2016, : 387 - 395
  • [34] Bio-Inspired Robot Launching System for a Mother-Son Underwater Manipulation Task
    Yue, Chunfeng
    Guo, Shuxiang
    Li, Yaxin
    Li, Maoxun
    2014 IEEE INTERNATIONAL CONFERENCE ON MECHATRONICS AND AUTOMATION (IEEE ICMA 2014), 2014, : 174 - 179
  • [35] Multi-material Bio-inspired Soft Octopus Robot for Underwater Synchronous Swimming
    Ahmed, Faheem
    Waqas, Muhammad
    Shaikh, Bushra
    Khan, Umair
    Soomro, Afaque Manzoor
    Kumar, Suresh
    Ashraf, Hina
    Memon, Fida Hussain
    Choi, Kyung Hyun
    JOURNAL OF BIONIC ENGINEERING, 2022, 19 (05) : 1229 - 1241
  • [36] Multi-material Bio-inspired Soft Octopus Robot for Underwater Synchronous Swimming
    Faheem Ahmed
    Muhammad Waqas
    Bushra Shaikh
    Umair Khan
    Afaque Manzoor Soomro
    Suresh Kumar
    Hina Ashraf
    Fida Hussain Memon
    Kyung Hyun Choi
    Journal of Bionic Engineering, 2022, 19 : 1229 - 1241
  • [37] Development of Bio-inspired Underwater Robot with Adaptive Morphology Capable of Multiple Swimming Modes
    Paschal, Thibaut
    Shintake, Jun
    Mintchev, Stefano
    Floreano, Dario
    2017 IEEE/RSJ INTERNATIONAL CONFERENCE ON INTELLIGENT ROBOTS AND SYSTEMS (IROS), 2017, : 4197 - 4202
  • [38] Design and development of modular magnetic bio-inspired autonomous underwater robot-MMBAUV
    Wright, Marvin
    Xiao, Qing
    Dai, Saishuai
    Post, Mark
    Yue, Hong
    Sarkar, Bodhi
    OCEAN ENGINEERING, 2023, 273
  • [39] A bio-inspired undulating robotic fin: Design, development and experimental validation
    Avila Alba, Jonathan
    Abril Tones-Mendez, L.
    Flores Castro, Agustin
    OCEANS 2017 - ANCHORAGE, 2017,
  • [40] Kinematic Study on Generated Thrust of Bio-inspired Robotic with Undulating Propulsion
    Van Hien Nguyen
    Van Tu Duong
    Huy Hung Nguyen
    Van Dong Nguyen
    Van Sy Le
    Tan Tien Nguyen
    2020 INTERNATIONAL CONFERENCE ON ADVANCED MECHATRONIC SYSTEMS (ICAMECHS), 2020, : 29 - 32