This study shows the first results of a long-term monitoring campaign on an offshore wind turbine in the Belgian North Sea. It focuses on the continuous monitoring of the resonant frequencies and damping values of the most dominant modes of the support structure. These parameters allow to better understand the dynamics of offshore wind turbines and are crucial in the fatigue assessment during the design phase. They can also help to minimise operation and maintenance (O&M) costs and to assess the lifetime of the offshore wind turbines structures during their operation. To do an accurate continuous monitoring of these parameters, a state-of-the-art operational modal analysis technique has been automated, so that no human-interaction is requir...
The paper describes the implementation of a dynamic monitoring system at a 2.0 MW onshore wind turbi...
© The Society for Experimental Mechanics, Inc. 2014. The ability to identify the dynamic properties ...
Cross-wind vibrations due to wave loading misaligned with wind turbulence are often a design driver ...
In order to minimize O&M costs and to extend the lifetime of offshore wind turbines it will be of hi...
This article will present and discuss the approach and the first results of a long-term dynamic moni...
An offshore wind turbine (OWT) is a complex structure that consists of different parts (e.g., founda...
Offshore wind turbines are complex structures, and their dynamics can vary significantly because of ...
During the last years, offshore wind turbines have increased significantly in size with larger rotor...
Offshore wind turbines can exhibit dynamic resonant behavior due to sea states with wave excitation ...
The increasing energy prices together with the uncertainty about long term sufficiency of fossil fue...
The work presented in this study describes a comparative study between different techniques aimed at...
An offshore wind turbine (OWT) is a complex structure that consists of different parts (e.g., founda...
The work presented in this paper describes a comparative study between different techniques aimed at...
The paper describes the implementation of a dynamic monitoring system at a 2.0 MW onshore wind turbi...
The paper describes the implementation of a dynamic monitoring system at a 2.0 MW onshore wind turbi...
The paper describes the implementation of a dynamic monitoring system at a 2.0 MW onshore wind turbi...
© The Society for Experimental Mechanics, Inc. 2014. The ability to identify the dynamic properties ...
Cross-wind vibrations due to wave loading misaligned with wind turbulence are often a design driver ...
In order to minimize O&M costs and to extend the lifetime of offshore wind turbines it will be of hi...
This article will present and discuss the approach and the first results of a long-term dynamic moni...
An offshore wind turbine (OWT) is a complex structure that consists of different parts (e.g., founda...
Offshore wind turbines are complex structures, and their dynamics can vary significantly because of ...
During the last years, offshore wind turbines have increased significantly in size with larger rotor...
Offshore wind turbines can exhibit dynamic resonant behavior due to sea states with wave excitation ...
The increasing energy prices together with the uncertainty about long term sufficiency of fossil fue...
The work presented in this study describes a comparative study between different techniques aimed at...
An offshore wind turbine (OWT) is a complex structure that consists of different parts (e.g., founda...
The work presented in this paper describes a comparative study between different techniques aimed at...
The paper describes the implementation of a dynamic monitoring system at a 2.0 MW onshore wind turbi...
The paper describes the implementation of a dynamic monitoring system at a 2.0 MW onshore wind turbi...
The paper describes the implementation of a dynamic monitoring system at a 2.0 MW onshore wind turbi...
© The Society for Experimental Mechanics, Inc. 2014. The ability to identify the dynamic properties ...
Cross-wind vibrations due to wave loading misaligned with wind turbulence are often a design driver ...