A composite blade structure for a 2 MW horizontal axis wind turbine is optimally designed. Design requirements are simultaneously minimizing material cost and blade weight while satisfying the constraints on stress ratio, tip deflection, fatigue life and laminate layup requirements. The stress ratio and tip deflection under extreme gust loads and the fatigue life under a stochastic normal wind load are evaluated. A blade element wind load model is proposed to explain the wind pressure difference due to blade height change during rotor rotation. For fatigue life evaluation, the stress result of an implicit nonlinear dynamic analysis under a time-varying fluctuating wind is converted to the histograms of mean and amplitude of maximum stress r...
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...
A multi-objective optimization method for the structural design of horizontal-axis wind turbine (HAW...
AbstractMaterials used in the development and construction of the blades are essential for the prope...
An extensively automated optimization procedure is presented for a horizontal axis wind turbine (HAW...
Reliability-based design optimization of composite wind turbine blades for fatigue life under wind l...
This paper presents a method to optimise the material layout of a fibreglass-reinforced composite co...
International audienceIn order to obtain an optimal design of composite offshore wind turbine blade,...
International audienceIn order to obtain an optimal design of composite offshore wind turbine blade,...
International audienceIn order to obtain an optimal design of composite offshore wind turbine blade,...
The present thesis presents a methodology for efficiently obtaining an optimal blade fatigue test se...
The search for more efficient and sustainable renewable energies is rapidly growing. Throughout the ...
Modern large wind turbines, utilized to harness the kinetic energy of the wind, are rated at megawat...
The search for more efficient and sustainable renewable energies is rapidly growing. Throughout the ...
Purpose Wind turbines are one of the best candidates to solve the problem of increasing energy deman...
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...
A multi-objective optimization method for the structural design of horizontal-axis wind turbine (HAW...
AbstractMaterials used in the development and construction of the blades are essential for the prope...
An extensively automated optimization procedure is presented for a horizontal axis wind turbine (HAW...
Reliability-based design optimization of composite wind turbine blades for fatigue life under wind l...
This paper presents a method to optimise the material layout of a fibreglass-reinforced composite co...
International audienceIn order to obtain an optimal design of composite offshore wind turbine blade,...
International audienceIn order to obtain an optimal design of composite offshore wind turbine blade,...
International audienceIn order to obtain an optimal design of composite offshore wind turbine blade,...
The present thesis presents a methodology for efficiently obtaining an optimal blade fatigue test se...
The search for more efficient and sustainable renewable energies is rapidly growing. Throughout the ...
Modern large wind turbines, utilized to harness the kinetic energy of the wind, are rated at megawat...
The search for more efficient and sustainable renewable energies is rapidly growing. Throughout the ...
Purpose Wind turbines are one of the best candidates to solve the problem of increasing energy deman...
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...
A multi-objective optimization method for the structural design of horizontal-axis wind turbine (HAW...