Study on springing of large oil tanker and bulk carrier and the influence to fatigue

被引:0
作者
Yang P. [1 ,2 ]
Gu X.-K. [2 ]
Ding J. [2 ]
Zhang F. [2 ]
Hu J.-J. [2 ]
机构
[1] Wuhan Second Ship Design and Research Institute, Wuhan
[2] China Ship Scientific Research Center, Wuxi
来源
Chuan Bo Li Xue/Journal of Ship Mechanics | 2016年 / 20卷 / 10期
关键词
Bulk carrier; Fatigue damage; Model trial; Oil tanker; Springing;
D O I
10.3969/j.issn.1007-7294.2016.10.012
中图分类号
学科分类号
摘要
Based on the springing model tests of one large oil tanker and bulk carrier, the phenomenon of springing is investigated; the influence of springing to structural fatigue is calculated by stress data for short-term sea state measured from model tests. Moreover, one simplified method is proposed to analyze the springing in short-term sea state and the influence to structural fatigue. And, the influences of springing to structural fatigue in long-term sea state for some typical sea routes are studied. The results show that the oil tanker and bulk carrier have obvious springing under ballast condition, which is different for various routes. The simplified method could assess the fatigue damage due to springing properly, and which has some practical value in engineering. © 2016, Editorial Board of Journal of Ship Mechanics. All right reserved.
引用
收藏
页码:1320 / 1329
页数:9
相关论文
共 9 条
[1]  
Storhaug G., Experimental investigation of wave induced vibration and their effect on the fatigue loading of ships, (2007)
[2]  
Wu M.K., Moan T., Sensitivity of extreme hydroelastic load effects to changes in ship hull stiffness and structural damping, Ocean Engineering, 32, pp. 1745-1756, (2007)
[3]  
Iijima K., Yao T., Moan T., Structural responses of a ship in severe seas considering global hydroelastic vibrations, Marine Structures, 21, pp. 420-445, (2008)
[4]  
Pedersen P.T., Jensen J.J., Estimation of hull girder vertical bending moments including nonlinear and flexibility effects using closed form expressions, Proceeding of IMechE, Part M: J Engineering for the Maritime Environment, 223, 3, pp. 377-390, (2009)
[5]  
Wang X.L., Gu X.K., Hu J.J., Springing investigation of a ship based on model tests and 3D hydroelastic theory, Journal of Ship Mechanics, 16, 8, pp. 915-925, (2012)
[6]  
Storhaug G., Vidic-Perunovic J., Rudinger F., Hoitsmark G., Et al., Springing/whipping response of a large ocean-going vessel-A comparison between numerical simulations and full scale measurements, Proceeding of the 3rd International Conference on Hydroelasticity in Marine Technology, pp. 117-131, (2003)
[7]  
Drummen I., Storhaug G., Moan T., Experimental and numerical investigation of fatigue damage due to wave-induced vibration in a containership in head seas, J Mar Sci Technol, 13, pp. 428-445, (2008)
[8]  
Common Structural rules for bulk carriers and oil tankers (HCSR), (2013)
[9]  
Environmental conditions and environmental loads, (2007)