In this paper, an analysis of the joint that transmits power from the blades to the generator is performed using the FEM (finite element method). The mode shapes and natural frequencies were extracted using experimental modal analysis in order to establish the FEM model. Then, the model was verified by comparing the mode shapes and natural frequencies to those obtained from the ANSYS modal analysis. Dynamic stress analysis was performed at the rated and limited wind speeds considering the wind load and gravity. �� 2012 The Korean Society of Mechanical Engineers
Recently, renewable energy sources are crucial in the nation development as the world facing with th...
Wind turbines cannot simply be installed in Malaysia due to low wind speed condition. the project ha...
© 2017 Elsevier Ltd In the current state-of-the-art, computational fluid dynamics (CFD) analysis and...
Abstract:-The aim of this work is the calculation of the dynamic loads and stresses acting on wind t...
As the requirements for improved stiffness, reliability, fatigue life and efficiency increase, there...
With the development of wind power generation technology, the wind turbine blade is becoming more an...
In this work, the analysis is done on a blade of length 66.5cm which is designed for AIR X- 400W hor...
This report briefly describes the modal analysis of a 500 kW wind turbine carried out using finite e...
The aim of the present paper is to evaluate structural health monitoring (SHM) techniques based on m...
This study is presented here that the stress characteristics of an existing 5-meter composite wind t...
Owing to the fast development in the energy filed, the demand is increasing to improve energy effici...
The calculation of the dynamic load and stresses acting on wind turbine blades in order to predict f...
International audienceThroughout their operating life, offshore wind turbine blades are subjected to...
This project describes the application of finite element analysis (FEA) in studying the strength of...
Horizontal axis wind turbines (HAWTs) are the dominating technology in large scale energy production...
Recently, renewable energy sources are crucial in the nation development as the world facing with th...
Wind turbines cannot simply be installed in Malaysia due to low wind speed condition. the project ha...
© 2017 Elsevier Ltd In the current state-of-the-art, computational fluid dynamics (CFD) analysis and...
Abstract:-The aim of this work is the calculation of the dynamic loads and stresses acting on wind t...
As the requirements for improved stiffness, reliability, fatigue life and efficiency increase, there...
With the development of wind power generation technology, the wind turbine blade is becoming more an...
In this work, the analysis is done on a blade of length 66.5cm which is designed for AIR X- 400W hor...
This report briefly describes the modal analysis of a 500 kW wind turbine carried out using finite e...
The aim of the present paper is to evaluate structural health monitoring (SHM) techniques based on m...
This study is presented here that the stress characteristics of an existing 5-meter composite wind t...
Owing to the fast development in the energy filed, the demand is increasing to improve energy effici...
The calculation of the dynamic load and stresses acting on wind turbine blades in order to predict f...
International audienceThroughout their operating life, offshore wind turbine blades are subjected to...
This project describes the application of finite element analysis (FEA) in studying the strength of...
Horizontal axis wind turbines (HAWTs) are the dominating technology in large scale energy production...
Recently, renewable energy sources are crucial in the nation development as the world facing with th...
Wind turbines cannot simply be installed in Malaysia due to low wind speed condition. the project ha...
© 2017 Elsevier Ltd In the current state-of-the-art, computational fluid dynamics (CFD) analysis and...