期刊文献+

Dynamic Response Analysis and Vibration Control for A Fixed-Bottom Offshore Wind Turbine Subjected to Multiple External Excitations

下载PDF
导出
摘要 For the offshore wind turbines installed in earthquake areas,their operation is affected by seismic loads in addition to wind and wave loads.Therefore,it is necessary to study the dynamic responses and vibration control of the wind turbines.In previous studies,the structural responses of offshore wind turbines are usually investigated in the parked case,while the blade rotation effect is usually not considered.The evaluation on the structural responses may be inaccurate under this condition,further affecting the evaluation on the vibration control performance of a control system.In view of it,this paper established a complete multi-body model of a fixed-bottom offshore wind turbine considering pile-soil interaction,and then performed simulations when the wind turbine was subjected to multiple external excitations.Continued,a single tuned mass damper(STMD)system and a multiple tuned mass dampers(MTMDs)system were applied to control structural vibrations of the wind turbine.Then,based on the construction of a simplified main structure-TMD system,TMD parameters were optimized.Finally,twelve load cases including operating and parked conditions were selected to perform simulations.Results show that the influence of the seismic excitation on blade responses is greater under the parked condition than that under the operating condition.Moreover,STMD/MTMDS exhibit better performance under the parked condition than that under the operating condition.Compared with STMD,MTMDS can better suppress the vibrations at both the fundamental and high-order modes,and exhibits significant robustness under the condition of changing soil parameters.
出处 《China Ocean Engineering》 SCIE EI CSCD 2022年第1期50-64,共15页 中国海洋工程(英文版)
基金 sponsored by the Scientific Research Foundation of Chongqing University of Technology (Grant No. 2020ZDZ023) the Project of Science and Technology Research Program of Chongqing Education Commission of China (Grant No. KJQN202101133) the National Natural Science Foundation Cultivation Program of Chongqing University of Technology (Grant No.2021PYZ14) Shanghai Engineering Research Center of Marine Renewable Energy (Grant No. 19DZ2254800) the Science and Technology Research Program of Chongqing Municipal Education Commission (Grant No. KJQN201805801)
  • 相关文献

参考文献5

二级参考文献59

  • 1Bachynski, E. E. and Moan, T., 2012. Design considerations for tension leg platform wind turbines, Mar. Struct., 29(1): 89-114.
  • 2Bachynski, E. E. and Moan, T., 2014. Ringing loads on tension leg platform wind turbines, Ocean Eng., 84, 237- 248.
  • 3Chakrabarti, S. K., 2002. The Theory and Practice of Hydrodynamics and Vibration, World Scientific, Singapore, Advanced Series on Ocean Engineering, Vol. 20.
  • 4Chen, B. and Zang, C. Z., 2009. Artificial immune pattern recognition for structure damage classification, Comput. Struct., 87(22): 1394-1407.
  • 5Dasgupa, D., 2006. Advances in artificial immune systems, IEEE Computational Intelligence Magazine, 1(4): 40-49.
  • 6Deng, L. and Cai, C. S., 2009. Identification of parameters of vehicles moving on bridges, Eng. Struct., 31(10): 2474-2485.
  • 7Emdadi, H., Yazdanian, M., Ettefagh, M. M. and Feizi, M., 2013. Double four-bar crank-slider mechanismdynamic balancing by meta-heuristic algorithms, International Journal of Artificial Intelligence & Applications, 4(5): 1-18.
  • 8Ettefagh, M. M. and Saeidi, M., 2014. Optimal synthesis of four-bar steering mechanism using AIS and genetic algorithms, Journal of Mechanical Science and Technology, 28(6): 2351-2362.
  • 9Ettefagh, M. M., Abbasi, M. and Emdadi, H., 2013. Path synthesis of the four-bar mechanism using ABC algorithm and comparing with BGA, Proceedings of 2013 IEEE International Symposium on Innovations in Intelligent Systems and Applications (INISTA), Albena, Bulgaria, 1-5.
  • 10Ettefagh, M. M., Alipour, M., Golizadeh, Y. and Akbari, E., 2014. Experimental and theoretical modeling of 5 MW offshore wind turbine with TLP platform, Proceedings of the 13th International Conference on Clean Energy, Istanbul, Turkey.

共引文献18

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