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  4. Comparative analysis of rolling contact fatigue life in a wind turbine pitch bearing with different modeling approaches
 
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May 31, 2024
Journal Article
Title

Comparative analysis of rolling contact fatigue life in a wind turbine pitch bearing with different modeling approaches

Abstract
The load calculation for wind turbines usually does not take pitch bearings into account, and the pitch-bearing internal load distribution is calculated in a decoupled process. In the current study, a coupled wind turbine load simulation considering the pitch bearings is proposed. Internal pitch-bearing load distribution and roller contact fatigue life are compared to a decoupled approach using a high-fidelity finite-element model. Internal pitch-bearing load distribution can be an essential variable in almost all major pitch-bearing failures. Furthermore, rolling contact fatigue is one of the major types of pitch-bearing failure that can represent the bearing service life. The results show that the flexibility of the surroundings has an effect on the contact forces. As a result, the finite element model-based life calculation of the NREL 5 MW turbine predicts a longer rolling contact fatigue life for the bearing than the multi-body system-based one. For the IWT7.5, sample load cases indicate that this behavior is different, leading to the conclusion that the life of the bearing is significantly affected by the stiffness of the bearing and its surrounding components.
Author(s)
Rezaei, Ashkan
Schleich, Florian  
Fraunhofer-Institut für Windenergiesysteme IWES  
Menck, Oliver  
Fraunhofer-Institut für Windenergiesysteme IWES  
Graßmann, Matthis
Fraunhofer-Institut für Windenergiesysteme IWES  
Bartschat, Arne  
Fraunhofer-Institut für Windenergiesysteme IWES  
Nejad, Amir R.
Journal
Journal of physics. Conference series  
Project(s)
Entwicklung einer Methodik zur Erstellung digitaler Zwillinge von Rotorblattlagern zur Zustandsüberwachung  
Funder
Bundesministerium für Wirtschaft und Klimaschutz  
Conference
International Conference "The Science of Making Torque from Wind" 2024  
Open Access
DOI
10.1088/1742-6596/2767/5/052036
Language
English
Fraunhofer-Institut für Windenergiesysteme IWES  
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