Nonlinear dynamic response analysis of supercavitating vehicles

被引:0
|
作者
麻震宇 [1 ]
林明东 [1 ]
胡凡 [1 ]
张为华 [1 ]
机构
[1] College of Aerospace and Material Engineering,National U niversity of Defense Technology
关键词
supercavitating vehicle; shell element of relative degrees of freedom; nonlinear finite element; dynamic response;
D O I
暂无
中图分类号
U661.1 [船舶流体力学];
学科分类号
摘要
A finite element model for the supercavitating underwater vehicle was developed by employing 16-node shell elements of relative degrees of freedom.The nonlinear structural dynamic response was performed by introducing the updated Lagrangian formulation.The numerical results indicate that there exists a critical thickness for the supercavitating plain shell for the considered velocity of the vehicle.The structure fails more easily because of instability with the thickness less than the critical value,while the structure maintains dynamic stability with the thickness greater than the critical value.As the velocity of the vehicle increases,the critical thickness for the plain shell increases accordingly.For the considered structural configuration,the critical thicknesses of plain shells are 5 and 7 mm for the velocities of 300 and 400 m/s,respectively.The structural stability is enhanced by using the stiffened configuration.With the shell configuration of nine ring stiffeners,the maximal displacement and von Mises stress of the supercavitating structure decrease by 25% and 17% for the velocity of 300 m/s,respectively.Compared with ring stiffeners,longitudinal stiffeners are more significant to improve structural dynamic performance and decrease the critical value of thickness of the shell for the supercavitating vehicle.
引用
收藏
页码:2502 / 2513
页数:12
相关论文
共 50 条
  • [1] Nonlinear dynamic response analysis of supercavitating vehicles
    Zhen-yu Ma
    Ming-dong Lin
    Fan Hu
    Wei-hua Zhang
    Journal of Central South University, 2012, 19 : 2502 - 2513
  • [2] Nonlinear dynamic response analysis of supercavitating vehicles
    Ma Zhen-yu
    Lin Ming-dong
    Hu Fan
    Zhang Wei-hua
    JOURNAL OF CENTRAL SOUTH UNIVERSITY, 2012, 19 (09) : 2502 - 2513
  • [3] Nonlinear analysis of dynamic stability for the thin cylindrical shells of supercavitating vehicles
    An, Hai
    Zhou, Ling
    Wei, Xing
    An, Weiguang
    ADVANCES IN MECHANICAL ENGINEERING, 2017, 9 (01) : 1 - 15
  • [4] Structural dynamic response characteristics of supercavitating underwater vehicles
    Zhang, Jinsheng
    Zhang, Jiazhong
    Wei, Yingjie
    Cao, Wei
    Beijing Hangkong Hangtian Daxue Xuebao/Journal of Beijing University of Aeronautics and Astronautics, 2010, 36 (04): : 411 - 414
  • [5] Influences of system parameters on nonlinear dynamic characteristics of supercavitating vehicles
    Lü, Yipin
    Xiong, Tianhong
    Yi, Wenjun
    Guan, Jun
    Zhendong yu Chongji/Journal of Vibration and Shock, 2017, 36 (24): : 156 - 164
  • [6] Dynamic response of shell structures of supercavitating vehicles in variable speed motion
    Li, K.-B., 1600, Chinese Vibration Engineering Society (32):
  • [7] Nonlinear Vibration and Control of Underwater supercavitating Vehicles
    Xiong, Tianhong
    Lv, Yipin
    Yi, Wenjun
    IEEE ACCESS, 2018, 6 : 62503 - 62513
  • [8] Dynamic buckling and reliability analysis of a cylindrical thin shell for supercavitating vehicles
    Wang, J.-F., 1600, Chinese Vibration Engineering Society (33):
  • [9] Dynamic features of kinetic energy supercavitating vehicles
    Wang, Kangjian
    Rong, Guang
    Yin, Hongqiao
    Yi, Wenjun
    APPLIED OCEAN RESEARCH, 2020, 102
  • [10] Dynamic analysis of flexible supercavitating vehicles using modal-based elements
    Choi, JY
    Ruzzene, M
    Bauchau, OA
    SIMULATION-TRANSACTIONS OF THE SOCIETY FOR MODELING AND SIMULATION INTERNATIONAL, 2004, 80 (11): : 619 - 633