期刊文献+

Hybrid Analysis Approach for Stochastic Response of Offshore Jacket Platforms 被引量:2

Hybrid Analysis Approach for Stochastic Response of Offshore Jacket Platforms
在线阅读 下载PDF
导出
摘要 The dynamic response of offshore platforms is more serious in hostile sea environment than in shallow sea. In this paper, a hybrid solution combined with analytical and numerical method is proposed to compute the stochastic response of fixed offshore platforms to random waves, considering wave-structure interaction and non-linear drag force. The simulation program includes two steps: the first step is the eigenanalysis aspects associated the structure and the second step is response estimation based on spectral equations. The eigenanalysis could be done through conventional finite element method conveniently and its natural frequency and mode shapes obtained. In the second part of the process, the solution of the offshore structural response is obtained by iteration of a series of coupled spectral equations. Considering the third-order term in the drag force, the evaluation of the three-fold convolution should be demanded for nonlinear stochastic response analysis. To demonstrate this method, a numerical analysis is carried out for both linear and non-linear platform motions. The final response spectra have the typical two peaks in agreement with reality, indicating that the hybrid method is effective and can be applied to offshore engineering. The dynamic response of offshore platforms is more serious in hostile sea environment than in shallow sea. In this paper, a hybrid solution combined with analytical and numerical method is proposed to compute the stochastic response of fixed offshore platforms to random waves, considering wave-structure interaction and non-linear drag force. The simulation program includes two steps: the first step is the eigenanalysis aspects associated the structure and the second step is response estimation based on spectral equations. The eigenanalysis could be done through conventional finite element method conveniently and its natural frequency and mode shapes obtained. In the second part of the process, the solution of the offshore structural response is obtained by iteration of a series of coupled spectral equations. Considering the third-order term in the drag force, the evaluation of the three-fold convolution should be demanded for nonlinear stochastic response analysis. To demonstrate this method, a numerical analysis is carried out for both linear and non-linear platform motions. The final response spectra have the typical two peaks in agreement with reality, indicating that the hybrid method is effective and can be applied to offshore engineering.
出处 《China Ocean Engineering》 SCIE EI 2000年第2期143-152,共10页 中国海洋工程(英文版)
基金 National Natural Science Foundation of China(Grant No.59895410,59779002)
关键词 offshore platform stochastic response non-linear drag force hybrid analysis wave-structure interaction offshore platform stochastic response non-linear drag force hybrid analysis wave-structure interaction
  • 相关文献

参考文献17

  • 1[1]Bendat, J. S. and Piersol, A. G., 1986. Decomposition of Wave Forces into Linear and Non-Linear Components, J.Sound Vibration, 106 (3), 391~408.
  • 2[2]Berge, B. and Penzien, J., 1974. Three- Dimensional Stochastic Response of Offshore Towers to Wave Forces, OTC2050, 173~ 190.
  • 3[3]Borgman, L. E., 1967. Spectral Analysis of Ocean Wave Forces on Piling, J. Waterways and Harbors, ASCE, 129~ 156.
  • 4[4]CHANG, M. T. and TUNG, C. C., 1990. An Approximate Method for Dynamic Analysis of Offshore Structures to Wave Action, Eng. Struc., 120~ 123.
  • 5[5]Clough, R. W. and Pensien, J., 1974. Dynamic of Structures, McGraw Hill Book Co., Inc., New York.
  • 6[6]Dunwoody, A. B. and Vandiver, J. K., 1981. The Influence of Separated Flow Drag on the Dynamic Response of Offshore Structures to Random Waves, Intl. Symp. Hydrodynamics in Ocean Engineering, Norwegian Inst. Tech.,263~ 287.
  • 7[7]Godeau, A. J., Deleuil, G. E., Doris, C. G. and Heas, J. Y., 1977. Statistical Analysis of Nonlinear Dynamic Response of Fixed Structures to Random Waves, Fatigue Evaluation, OTC3030. 493 ~ 502.
  • 8[8]OU Jinping and WANG Guangynan, 1995. Structural Random Vibration, Beijing, Railway Press. (in Chinese)
  • 9[9]Kareem, A. Hsieh, C. C. and Tognarelli, M. A., 1998. Frequency-Domain Analysis of Offshore Platform in Non-Gaussian Seas, Journal of Engineering Mechanics, 668~ 683.
  • 10[10]Laya, E. J., Connor, J. J. and Sunder, S., 1984. Hydrodynamic Forces on Flexible Offshore Structures, Journal of Engineering Mechanics ASCE, 433 ~ 448.

同被引文献23

引证文献2

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部