FEM approach to the simulation of collision and grounding damage

被引:65
|
作者
Kitamura, O [1 ]
机构
[1] Mitsubishi Heavy Ind Co Ltd, Ship & Ocean Engn Dept, Chiyoda Ku, Tokyo 1008315, Japan
关键词
collision simulation; finite element analysis; crashworthiness; equivalent failure strain;
D O I
10.1016/S0951-8339(02)00010-2
中图分类号
U6 [水路运输]; P75 [海洋工程];
学科分类号
0814 ; 081505 ; 0824 ; 082401 ;
摘要
Recently, finite element detailed simulations of collision and grounding damage to the hull structures have been practicable. For example, rigid body motions and non-linear structural responses can be calculated by a desk-top engineering workstation within a CPU time of one week, employing finite element models assembled by more than 700,000 elements. Although considerable preparatory man-power is required and the accuracy of the results is still open for further improvement, finite element method approach is the most powerful way at present. On the other hand, simplified analytical approach is suited for a series of qualitative survey, however, it tends to be erroneous when the subject is varying from the fundamental assumptions laid originally for the specific case. The present paper points out several uncertain factors involved in the typical simplified analytical approach such as hull girder bending, forward velocity of a collided ship, etc., that may affect the crashworthiness significantly. (C) 2002 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:403 / 428
页数:26
相关论文
共 50 条
  • [1] Towards an integrated approach to collision and grounding damage assessment
    La Scola, E.
    Mermiris, G.
    [J]. COLLISION AND GROUNDING OF SHIPS AND OFFSHORE STRUCTURES, 2013, : 179 - 185
  • [2] A review of collision and grounding damage assessment methods
    Ehlers S.
    [J]. Marine Systems & Ocean Technology, 2011, 6 (1) : 5 - 15
  • [3] A STUDY OF PLATE TEARING FOR SHIP COLLISION AND GROUNDING DAMAGE
    JONES, N
    JOURI, WS
    [J]. JOURNAL OF SHIP RESEARCH, 1987, 31 (04): : 253 - 268
  • [4] Simulation of ship collision and grounding damage using Hosford-Coulomb fracture model for shell elements
    Cerik, Burak Can
    Lee, Kangsu
    Park, Sung-Ju
    Choung, Joonmo
    [J]. OCEAN ENGINEERING, 2019, 173 : 415 - 432
  • [5] A study on the improved tanker structure against collision and grounding damage
    Kitamura, O
    Kuroiwa, T
    Kawamoto, Y
    Kaneko, E
    [J]. PRACTICAL DESIGN OF SHIPS AND MOBILE UNITS, 1998, 11 : 173 - 179
  • [6] Effect of ship structure and size on grounding and collision damage distributions
    Pedersen, PT
    Zhang, SM
    [J]. OCEAN ENGINEERING, 2000, 27 (11) : 1161 - 1179
  • [7] Review of experiments and calculation procedures for ship collision and grounding damage
    Liu, Bin
    Pedersen, Preben Terndrup
    Zhu, Ling
    Zhang, Shengming
    [J]. MARINE STRUCTURES, 2018, 59 : 105 - 121
  • [8] Combined analytical FEM approach for efficient simulation of Lamb wave damage detection
    Shen, Yanfeng
    Giurgiutiu, Victor
    [J]. ULTRASONICS, 2016, 69 : 116 - 128
  • [9] Substation grounding system resistance calculations using a FEM approach
    Katsanou, V. N.
    Papagiannis, G. K.
    [J]. 2009 IEEE BUCHAREST POWERTECH, VOLS 1-5, 2009, : 1896 - 1901
  • [10] FEM Simulation Analysis of Head-Ground Collision
    Huang, Jianming
    Lei, Gang
    Bao, Chunyan
    Liu, Xianjue
    [J]. PROCEEDINGS OF THE SECOND INTERNATIONAL CONFERENCE ON MODELLING AND SIMULATION (ICMS2009), VOL 7, 2009, : 88 - 93