AbstractAccording to theoretical calculating result of stress, four different lay-up structures of 1.2MW horizontal axis wind turbine blade, which can effectively endure various loads, are designed primarily. Based on composite laminate theory and finite element method, through analyzing their stress-strain, the optimal lay-up schema is confirmed. The verified analysis of stiffness and strength were performed under extreme load conditions. Numerical analysis results show that the designed blade structure was safe, and the value of stress and strain was low
International audienceIn order to obtain an optimal design of composite offshore wind turbine blade,...
The search for more efficient and sustainable renewable energies is rapidly growing. Throughout the ...
This paper presents the results of numerical analysis of stress and strain states which develop in ...
AbstractAccording to theoretical calculating result of stress, four different lay-up structures of 1...
In this chapter, four main topics in composite blades of wind turbines including design, stress anal...
AbstractThe structural aspects of a 70 meter long blade in an upwind, horizontal-axis wind turbine w...
Offshore wind energy is one of the main sources of renewable energy that can benefit from new genera...
The design of an optimised horizontal axis 5-meter-long wind turbine rotor blade in according with I...
Wind turbine is a device which converts kinetic energy from the wind into electrical power. Wind tur...
A composite blade structure for a 2 MW horizontal axis wind turbine is optimally designed. Design re...
AbstractMaterials used in the development and construction of the blades are essential for the prope...
The blade is a significant part of a wind turbine, due to its role in the conversion process of the ...
A wind turbine blade generally has complex structures including several layers of composite material...
The critical issue for generating electricity device driven by kinetic energy of the wind remains as...
This study is presented here that the stress characteristics of an existing 5-meter com...
International audienceIn order to obtain an optimal design of composite offshore wind turbine blade,...
The search for more efficient and sustainable renewable energies is rapidly growing. Throughout the ...
This paper presents the results of numerical analysis of stress and strain states which develop in ...
AbstractAccording to theoretical calculating result of stress, four different lay-up structures of 1...
In this chapter, four main topics in composite blades of wind turbines including design, stress anal...
AbstractThe structural aspects of a 70 meter long blade in an upwind, horizontal-axis wind turbine w...
Offshore wind energy is one of the main sources of renewable energy that can benefit from new genera...
The design of an optimised horizontal axis 5-meter-long wind turbine rotor blade in according with I...
Wind turbine is a device which converts kinetic energy from the wind into electrical power. Wind tur...
A composite blade structure for a 2 MW horizontal axis wind turbine is optimally designed. Design re...
AbstractMaterials used in the development and construction of the blades are essential for the prope...
The blade is a significant part of a wind turbine, due to its role in the conversion process of the ...
A wind turbine blade generally has complex structures including several layers of composite material...
The critical issue for generating electricity device driven by kinetic energy of the wind remains as...
This study is presented here that the stress characteristics of an existing 5-meter com...
International audienceIn order to obtain an optimal design of composite offshore wind turbine blade,...
The search for more efficient and sustainable renewable energies is rapidly growing. Throughout the ...
This paper presents the results of numerical analysis of stress and strain states which develop in ...