Hydroelasticity of large container ships

被引:50
作者
Senjanovic, Ivo [1 ]
Malenica, Sime [2 ]
Tomasevic, Stipe [1 ]
机构
[1] Univ Zagreb, Fac Mech Engn & Naval Architecture, Zagreb 10000, Croatia
[2] Bur Veritas, F-92077 Paris, France
关键词
Container ship; Hydroelasticity; Mathematical model; Numerical simulation;
D O I
10.1016/j.marstruc.2008.04.002
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
The importance of hydroelastic analysis of large and flexible container ships of today is pointed out for structure design. A methodology for investigation of this challenging phenomenon is drawn up and a mathematical model is worked out. It includes the definition of ship geometry, mass parameters, structure stiffness, and combines ship hydrostatics, hydrodynamics, wave load, ship motion and vibrations. The modal superposition method is employed. Based on the presented theory, a computer program is developed and applied for hydroelastic analysis of a large container ship. The transfer functions for heave, pitch, roll, vertical and horizontal bending and torsion are presented. Rigid body and elastic responses are correlated. (C) 2008 Elsevier Ltd. All rights reserved.
引用
收藏
页码:287 / 314
页数:28
相关论文
共 50 条
[21]   Approximation Method for Flare Slamming Analysis of Large Container Ships in Parametric Rolling Conditions [J].
Lin Y. ;
Ma N. ;
Gu X. .
Journal of Marine Science and Application, 2018, 17 (3) :406-413
[22]   EXAMINATION OF EFFECT OF LATERAL LOADS ON THE HULL GIRDER ULTIMATE STRENGTH OF LARGE CONTAINER SHIPS [J].
Matsumoto, Toshiyuki ;
Shigemi, Toshiyuki ;
Kidogawa, Mitsuhiko ;
Ishibashi, Kinya ;
Sugimoto, Kei .
PROCEEDINGS OF THE ASME 35TH INTERNATIONAL CONFERENCE ON OCEAN, OFFSHORE AND ARCTIC ENGINEERING , 2016, VOL 3, 2016,
[23]   Prediction of Fatigue Strength of Extra-Large Container Ships Based on Spectrum Analysis [J].
Wang, Jiantao ;
Jiang, Bochen ;
Guo, Yunlong .
JOURNAL OF COASTAL RESEARCH, 2020, :146-149
[24]   PREDICTION OF THE ULTRA-LARGE CONTAINER SHIPS' PROPULSION POWER AT THE INITIAL DESIGN STAGE [J].
Korlak, Piotr Kamil .
KOMUNIKACIE - VEDECKE LISTY ZILINSKEJ UNIVERZITY V ZILINE, 2022, 24 (03) :B228-B238
[25]   Numerical Study on the Plume Behavior of Multiple Stacks of Container Ships [J].
Xu, Yine ;
Yu, Qi ;
Zhang, Yan ;
Ma, Weichun .
ATMOSPHERE, 2021, 12 (05)
[26]   Reliability analysis of hull girder ultimate strength for large container ships under whipping loads [J].
Shi, Gui-jie ;
Gao, Da-wei .
STRUCTURE AND INFRASTRUCTURE ENGINEERING, 2021, 17 (03) :319-330
[27]   Numerical investigations of micro bubble drag reduction effect for container ships [J].
Gamal M. ;
Kotb M. ;
Naguib A. ;
Elsherbiny K. .
Marine Systems and Ocean Technology, 2021, 16 (3-4) :199-212
[28]   Research on Intelligent Loading System for Container Ships [J].
Wu, Qingcai ;
Xia, Qiucheng ;
Wu, Maochuan .
2020 ASIA CONFERENCE ON GEOLOGICAL RESEARCH AND ENVIRONMENTAL TECHNOLOGY, 2021, 632
[29]   Application of 1D FEM & 3D BEM Hydroelastic Model for Stress Concentration Assessment in Large Container Ships [J].
Senjanovic, Ivo ;
Vladimir, Nikola ;
Cho, Dae Seung .
BRODOGRADNJA, 2012, 63 (04) :307-317
[30]   Investigation of ship hydroelasticity [J].
Senjanovic, Ivo ;
Malenica, Sime ;
Tomasevic, Stipe .
OCEAN ENGINEERING, 2008, 35 (5-6) :523-535