首页 | 本学科首页   官方微博 | 高级检索  
     检索      

Surge Response of a Compliant Offshore Structure by Time Domain Simulation
作者姓名:王迎光  薛雷平  谭家华
作者单位:School of Naval Architecture Ocean and Civil Eng. Shanghai Jiaotong Univ.,School of Naval Architecture Ocean and Civil Eng. Shanghai Jiaotong Univ.,School of Naval Architecture Ocean and Civil Eng. Shanghai Jiaotong Univ.,Shanghai 200240 China,Shanghai 200240 China,Shanghai 200240 China
摘    要:A single-degree-of-freedom equation of motion was used for modeling a compliant offshore structure exposed to viscous hydrodynamic loads. The equation of motion contains nonlinearities in the forms of both Duffing stiffness and Morison drag force with current. The water particle velocity and acceleration for calculating the Morison inertia and drag forces are modeled as Gaussian processes based on a Pierson-Moskowitz (P-M) elevation spectrum. The single-degree-of-freedom equation of motion containing different ocean current values are then numerically integrated via a fourth-order Runge-Kutta scheme. Time trajectories of the surge response displacements of the offshore structure and the response probability density curves are obtained. Furthermore, the ocean current influences on the response central moments up to the fourth order are studied. A literature review reveals that this is the first treatment of such a pair of nonlinearities in time domain. The simulation results are analyzed, and some conclusions valuable for engineering design are pointed out.


Surge Response of a Compliant Offshore Structure by Time Domain Simulation
WANG Ying-guang,XUE Lei-ping,TAN Jia-hua,.Surge Response of a Compliant Offshore Structure by Time Domain Simulation[J].Journal of Shanghai Jiaotong university,2007,12(6):838-844.
Authors:WANG Ying-guang  XUE Lei-ping  TAN Jia-hua  
Abstract:A single-degree-of-freedom equation of motion was used for modeling a compliant offshore structure exposed to viscous hydrodynamic loads. The equation of motion contains nonlinearities in the forms of both Duffing stiffness and Morison drag force with current. The water particle velocity and acceleration for calculating the Morison inertia and drag forces are modeled as Gaussian processes based on a Pierson-Moskowitz (P-M) elevation spectrum. The single-degree-of-freedom equation of motion containing different ocean current values are then numerically integrated via a fourth-order Runge-Kutta scheme. Time trajectories of the surge response displacements of the offshore structure and the response probability density curves are obtained. Furthermore, the ocean current influences on the response central moments up to the fourth order are studied. A literature review reveals that this is the first treatment of such a pair of nonlinearities in time domain. The simulation results are analyzed, and some conclusions valuable for engineering design are pointed out.
Keywords:compliant offshore structure  surge response  Morison drag force  P-M spectrum  Monte Carlo simulation
本文献已被 CNKI 万方数据 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号