AbstractTo reduce uncertainties associated with the fatigue behaviour of the highly safety relevant wind turbine rotor shaft and also to review today’s design practice the fatigue life time is tested on a full scale test rig. Further investigations of weight saving potentials contribute to suggestions for the usage of other materials. Therefore, a comprehensive comparison regarding the fatigue and the fracture mechanical behaviour of the rotor shaft made of different materials is done. For the loading situation it is distinguished between test conditions and a realistic cumulative frequency distribution of loads in a wind turbine
In this paper, the sensitivity of the structural integrity of wind turbine blades to debonding of th...
ABSTRACT: A 2.5m long glass fibre reinforced plastic composite wind turbine blade was fatigue tested...
Wind turbine rotor blades are subjected to a large number of highly variable loads, but life predict...
AbstractTo reduce uncertainties associated with the fatigue behaviour of the highly safety relevant ...
On one hand rotor shafts of wind turbines seem to be larger and heavier than they need to be, due to...
The size of wind turbine rotors has increased in the past decade from 40 m to more than 120 m di-ame...
The present thesis deals with probabilistic and defect tolerant fatigue assessment of wind turbine c...
Fatigue damage calculations are conducted as state-of-art design process for wind turbines. Fatigue ...
This paper provides a literature review of the most notable models relevant to the evaluation of the...
This thesis focuses on fatigue analysis and testing of large, multi MW wind turbine blades. The bla...
AbstractOne of the main challenges for the wind turbine industry currently, is to reduce the cost of...
In order to survey the structural characteristics of composite rotor blades on the wind turbine oper...
Abstract: Modern wind turbines are characterised by high, complex loads and by relatively light weig...
The power output from a wind turbine is proportional to rotor swept area and as a result in the pas...
The wind energy industry has been suffering from premature wind turbine gearbox failures since its i...
In this paper, the sensitivity of the structural integrity of wind turbine blades to debonding of th...
ABSTRACT: A 2.5m long glass fibre reinforced plastic composite wind turbine blade was fatigue tested...
Wind turbine rotor blades are subjected to a large number of highly variable loads, but life predict...
AbstractTo reduce uncertainties associated with the fatigue behaviour of the highly safety relevant ...
On one hand rotor shafts of wind turbines seem to be larger and heavier than they need to be, due to...
The size of wind turbine rotors has increased in the past decade from 40 m to more than 120 m di-ame...
The present thesis deals with probabilistic and defect tolerant fatigue assessment of wind turbine c...
Fatigue damage calculations are conducted as state-of-art design process for wind turbines. Fatigue ...
This paper provides a literature review of the most notable models relevant to the evaluation of the...
This thesis focuses on fatigue analysis and testing of large, multi MW wind turbine blades. The bla...
AbstractOne of the main challenges for the wind turbine industry currently, is to reduce the cost of...
In order to survey the structural characteristics of composite rotor blades on the wind turbine oper...
Abstract: Modern wind turbines are characterised by high, complex loads and by relatively light weig...
The power output from a wind turbine is proportional to rotor swept area and as a result in the pas...
The wind energy industry has been suffering from premature wind turbine gearbox failures since its i...
In this paper, the sensitivity of the structural integrity of wind turbine blades to debonding of th...
ABSTRACT: A 2.5m long glass fibre reinforced plastic composite wind turbine blade was fatigue tested...
Wind turbine rotor blades are subjected to a large number of highly variable loads, but life predict...