期刊文献+

A new bracing system for improvement of seismic performance of steel jacket type offshore platforms with float-over-deck 被引量:1

A new bracing system for improvement of seismic performance of steel jacket type offshore platforms with float-over-deck
下载PDF
导出
摘要 In this paper, the seismic response of a newly designed steel jacket offshore platform with a float over deck (FOD) system in the Persian Gulf was investigated through incremental dynamic analysis. Comparison of incremental dynamic analysis results for both directions of the platform shows that the lateral strength of the platform in the float over direction is less than its lateral strength in other direction. Dynamic characteristics measurement of a scale model of platform was also performed using forced vibration tests. From experimental measurement of the scaled model, it was observed that dynamic characteristic of the platform is different in the float over direction compared to the other direction. Therefore, a new offshore installed bracing system for the float over direction was proposed for improvement of seismic performance of this type of platform. Finally, the structure with the modified system was assessed using the probabilistic seismic assessment method as well as experimental measurement of its dynamic characteristics. It was observed that the proposed offshore installed bracing system improves the performance of platforms subjected to strong ground motion. In this paper, the seismic response of a newly designed steel jacket offshore platform with a float over deck (FOD) system in the Persian Gulf was investigated through incremental dynamic analysis. Comparison of incremental dynamic analysis results for both directions of the platform shows that the lateral strength of the platform in the float over direction is less than its lateral strength in other direction. Dynamic characteristics measurement of a scale model of platform was also performed using forced vibration tests. From experimental measurement of the scaled model, it was observed that dynamic characteristic of the platform is different in the float over direction compared to the other direction. Therefore, a new offshore installed bracing system for the float over direction was proposed for improvement of seismic performance of this type of platform. Finally, the structure with the modified system was assessed using the probabilistic seismic assessment method as well as experimental measurement of its dynamic characteristics. It was observed that the proposed offshore installed bracing system improves the performance of platforms subjected to strong ground motion.
出处 《Petroleum Science》 SCIE CAS CSCD 2013年第3期373-384,共12页 石油科学(英文版)
基金 sponsored by POGC (Pars Oil and Gas Company,No.132 "Investigation of Structural Health Monitoring of Steel Jacket Offshore Platforms") The financial support of POGC is gratefully acknowledged
关键词 Steel jacket type offshore platform float-over deck mean annual frequency force vibration test seismic performance dynamic characteristics Steel jacket type offshore platform, float-over deck, mean annual frequency, force vibration test, seismic performance, dynamic characteristics
  • 相关文献

参考文献22

  • 1American Petroleum Institute. Recommended practice for planning, designing and constructing fixed offshore platforms. API Recommended Practice 2A (RP-2A). 21st edition, American Petroleum Institute, Washington, D.C., 2000.
  • 2Asgarian B, Rahman Shokrgozar H, Shahcheraghi D, et al. Effect of soil pile structure interaction on dynamic characteristics of jacket type offshore platforms. Coupled Systems Mechanics. 2012. 1(4): 381- 395.
  • 3Bardet J P and Tobita T. NERA. A computer program for nonlinear earthquake site response analysis of layered soil deposits. Technical report, Department of Civil Engineering, University of Southern California, 2001.
  • 4Berger E, Mahin S A and Pyke R. Simplified method for evaluating soil- pile-structure interaction effects. Proceedings of the 9th offshore Technology Conference, 2-5 May 1977, Huston, Texas (paper SPE 2954).
  • 5Boulanger R W, Curras C J, Kutter B L, et al. Seismic soil pile structure interaction experiments and analysis. Journal of Geotechnical and Geo environmental Engineering. 1999. 125(9): 750-759.
  • 6Causevic M S. Mathematical modeling and full-scale forced vibration testing of a reinforced concrete structure. Engineering Structures. 1987.9(1): 2-8.
  • 7De Sortis A, Antonacci E and Vestroni F. Dynamic identification of a masonry building using forced vibration tests. Engineering Structures. 2005.27(2): 155-165.
  • 8FEMA. Recommended seismic design criteria for new steel moment- frame buildings, Report No. FEMA-350, SAC Joint Venture,Federal Emergency Management Agency, Washington, D.C., 2000a.
  • 9FEMA. Recommended seismic evaluation and upgrade criteria for existing welded steel moment-frame buildings. Report No. FEMA- 351, SAC Joint Venture, Federal Emergency Management Agency, Washington, D.C., 2000b.
  • 10FEMA. Recommended post-earthquake evaluation and repair criteria for welded steel moment-frame buildings. Report No. FEMA- 352, SAC Joint Venture, Federal Emergency Management Agency, Washington, D.C., 2000c.

同被引文献7

引证文献1

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