INVESTIGATION ON HEAVE MOTION AND LOAD RESPONSE OF A FPSO IN REGULAR WAVES BY FULLY NONLINEAR METHOD

被引:0
|
作者
Wang, Jia-Le [1 ]
Sun, Shi-Li [1 ]
Ren, Hui-long [1 ]
机构
[1] Harbin Engn Univ, Harbin, Peoples R China
关键词
D O I
暂无
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
In this paper, the full nonlinear method based on the three-dimensional potential flow theory and the dynamic analysis method of flexible components are combined to simulate the motion and load response of a FPSO in waves. On the boundary of the hull body, the coupled motions are considered in the impenetrable condition. An improved Eulerian method is adopted to trace strongly nonlinear 3-D free surface deformation. In the far field, artificial damping zone is applied to eliminate reflected wave. Rankine source method is adopted to solve the velocity potential in time domain. Hydrodynamic mesh on hull body is generated by using accumulative chord length cubic parameter spline function. After solving Poisson equation, the initial mesh on free surface becomes orthogonal. In each time step, elastic-mesh-technique (EMT) is used to optimize the mesh on free surface. Several auxiliary functions are introduced to decouple the motions and load, and then the fourth-order Runge-Kutta method is adopted to update the numerical model in time domain. For the forces of the mooring system on the hull at each time step, the dynamic equation of the flexible member is established by the dynamic analysis method based on the elastic slender rod mechanical model, and then the equation is discretized into matrix form by the finite element discretization method and solved. The coupled motion of FPSO hull and mooring system in regular waves of various frequencies in various directions is simulated, and the time domain solutions are obtained. RAO of heave motion in each wave direction is given. The load response at the midship section is analyzed.
引用
收藏
页数:7
相关论文
共 50 条
  • [41] Response of Ship Motion to Nonlinear Focusing Waves Based on High-order Spectral Method
    Xiao, Qian
    Zhu, Renchuan
    Huang, Shan
    Wang, Xiaojia
    Ship Building of China, 2020, 61 (01): : 50 - 59
  • [42] Extreme response of offshore wind turbines due to fully nonlinear waves
    Marino, Enzo
    Borri, Claudio
    Lugni, Claudio
    PROCEEDINGS OF THE 8TH INTERNATIONAL CONFERENCE ON STRUCTURAL DYNAMICS, EURODYN 2011, 2011, : 3443 - 3449
  • [43] NUMERICAL INVESTIGATION ON HYDROELASTIC RESPONSE OF A MODEL SHIP IN REGULAR HEAD WAVES
    Zhang, Han-Wen
    Zhu, Ling
    Liang, Qi-Yu
    Dai, Shao-ling
    PROCEEDINGS OF ASME 2024 43RD INTERNATIONAL CONFERENCE ON OCEAN, OFFSHORE AND ARCTIC ENGINEERING, OMAE2024, VOL 6, 2024,
  • [44] Experimental investigation of the nonlinear effects on the vertical motions and loads of a containership in regular waves
    Fonseca, N
    Soares, CG
    JOURNAL OF SHIP RESEARCH, 2004, 48 (02): : 118 - 147
  • [45] SVR-based identification of nonlinear roll motion equation for FPSOs in regular waves
    Hou, Xian-Rui
    Zou, Zao-Jian
    OCEAN ENGINEERING, 2015, 109 : 531 - 538
  • [46] Hydrodynamic performance analysis of a modified sandglass-type FPSO in regular waves using boundary element method
    Graylee, Adeleh
    Yousefifard, Mandi
    SCIENTIFIC JOURNALS OF THE MARITIME UNIVERSITY OF SZCZECIN-ZESZYTY NAUKOWE AKADEMII MORSKIEJ W SZCZECINIE, 2020, 64 (136):
  • [47] Numerical and Experimental Investigation on Nonlinear Cyclic Collapse Response of Ship Model in Regular Waves (vol 143, 041702, 2021)
    Liu, Weiqin
    Huang, Yu
    Li, Ye
    Song, Xuemin
    Wei, Fangyi
    Wu, Xiaoni
    JOURNAL OF OFFSHORE MECHANICS AND ARCTIC ENGINEERING-TRANSACTIONS OF THE ASME, 2022, 144 (05):
  • [48] An efficient front-tracking method for fully nonlinear interfacial waves
    Ping, Fan
    JOURNAL OF COMPUTATIONAL PHYSICS, 2008, 227 (15) : 7346 - 7367
  • [49] A stabilised nodal spectral element method for fully nonlinear water waves
    Engsig-Karup, A. P.
    Eskilsson, C.
    Bigoni, D.
    JOURNAL OF COMPUTATIONAL PHYSICS, 2016, 318 : 1 - 21
  • [50] The coupling analysis of tank motion and sloshing by a fully nonlinear decoupling method
    Wang, Jin
    Sun, Shi-Li
    Hu, Jian
    NONLINEAR DYNAMICS, 2017, 89 (02) : 971 - 985