Micro-wind turbines are energy conversion technologies strongly affected by fatigue, as a result of their size and the variability of loads, induced by the unsteady wind conditions, and modulated by a very high rotational speed. This work is devoted to the experimental and numerical characterization of the aeroelastic behavior of a test-case horizontal-axis wind turbine (HAWT) with a 2 m rotor diameter and a maximum power production of 3 kW. The experimental studies have been conducted at the wind tunnel of the University of Perugia and consisted of accelerometer measurements at the tower and the tail fin. The numerical setup was the Fatigue, Aerodynamics, Structures, and Turbulence (FAST) code for aeroelastic simulations, which was fed as ...
A wind turbine is a very well-known archetype of energy conversion system working at non-stationary ...
A wind turbine is a very well-known archetype of energy conversion system working at non-stationary ...
Horizontal axis wind turbines are subjected to various static and dynamic loads under different load...
Micro-wind turbines are energy conversion technologies strongly affected by fatigue, as a result of ...
An efficient and reliable exploitation of small horizontal-axis wind turbines (HAWT) is a complex ta...
An efficient and reliable exploitation of small horizontal-axis wind turbines (HAWT) is a complex ta...
The trend in the current development of modern horizontal axis wind turbines (HAWTs) is towards ligh...
The yawing of horizontal-axis wind turbines (HAWT) is a major topic in the comprehension of the dyna...
The new energy scenario is rising a strong interest towards the distributed production from renewabl...
The need to generate power from renewable sources to reduce demand for fossil fuels and the damage o...
International audienceThe characterization of wind turbines in yawed conditions is one of the most i...
This research has investigated novel vibration condition monitoring methods for horizontal-axis wind...
The work in this thesis deals with the development of an aeroelastic simulation tool for horizontal ...
One of the major challenges in the development of horizontal axis wind turbine is the selection of a...
A wind turbine is a very well-known archetype of energy conversion system working at non-stationary ...
A wind turbine is a very well-known archetype of energy conversion system working at non-stationary ...
A wind turbine is a very well-known archetype of energy conversion system working at non-stationary ...
Horizontal axis wind turbines are subjected to various static and dynamic loads under different load...
Micro-wind turbines are energy conversion technologies strongly affected by fatigue, as a result of ...
An efficient and reliable exploitation of small horizontal-axis wind turbines (HAWT) is a complex ta...
An efficient and reliable exploitation of small horizontal-axis wind turbines (HAWT) is a complex ta...
The trend in the current development of modern horizontal axis wind turbines (HAWTs) is towards ligh...
The yawing of horizontal-axis wind turbines (HAWT) is a major topic in the comprehension of the dyna...
The new energy scenario is rising a strong interest towards the distributed production from renewabl...
The need to generate power from renewable sources to reduce demand for fossil fuels and the damage o...
International audienceThe characterization of wind turbines in yawed conditions is one of the most i...
This research has investigated novel vibration condition monitoring methods for horizontal-axis wind...
The work in this thesis deals with the development of an aeroelastic simulation tool for horizontal ...
One of the major challenges in the development of horizontal axis wind turbine is the selection of a...
A wind turbine is a very well-known archetype of energy conversion system working at non-stationary ...
A wind turbine is a very well-known archetype of energy conversion system working at non-stationary ...
A wind turbine is a very well-known archetype of energy conversion system working at non-stationary ...
Horizontal axis wind turbines are subjected to various static and dynamic loads under different load...