Title :
Structural dynamic response of offshore wind turbine support system
Author :
Luchen Zhang ; Xin Wang ; Shaoze Luo
Author_Institution :
Dept. of Hydraulic Eng., Nanjing Hydraulic Res. Inst., Nanjing, China
Abstract :
The vibration safety of offshore wind turbine support system is a key problem of project construction, and structural dynamic response is an important basis for its evaluation. In this paper, tidal hydrodynamic characteristics of foundation with 8 piles are studied through physical model. Combining with the simulation of wind and mechanical vibration, structural dynamic response characteristics of offshore wind turbine support system are studied by finite element method. Results show that main energy of tidal hydrodynamic flucuating pressure concentrates within 10 Hz and main frequency is between 0.1~1.5 Hz. Strouhal number representing vortex shedding frequency of slab is about 0.2 and pile is 0.03. With combination effect of tide, wind, electromechanical load, the maximum displacement of support system appears on top of the tower, mainly caused by low-frequency dynamic forces such as tidal current, wind vortex shedding. Influence of mechanical vibration is relatively small.
Keywords :
finite element analysis; foundations; hydrodynamics; offshore installations; safety; structural engineering; vibrations; vortices; wind; wind power plants; Strouhal number; electromechanical load; finite element method; foundation; low-frequency dynamic forces; mechanical vibration; offshore wind turbine support system; piles; project construction; slab; structural dynamic response; support system displacement; tidal hydrodynamic characteristics; tidal hydrodynamic fluctuating pressure; vibration safety; vortex shedding frequency; wind simulation; wind vortex shedding; Acceleration; Hydrodynamics; Load modeling; Poles and towers; Vibrations; Wind turbines; flow around multi-cylinders; flucuating pressure; offshore wind power; pile-cap foundation; structural dynamic response; support system;
Conference_Titel :
Materials for Renewable Energy and Environment (ICMREE), 2013 International Conference on
Conference_Location :
Chengdu
Print_ISBN :
978-1-4799-3335-8
DOI :
10.1109/ICMREE.2013.6893691