A wind turbine blade generally has complex structures including several layers of composite materials with shear webs, making its structure design very challenging. In this paper, a structural optimisation model for wind turbine composite blades has been developed based on a parametric FEA (finite element analysis) model and a GA (genetic algorithm) model. The optimisation model minimises the mass of composite blades with multi-criteria constraints. The number of unidirectional plies, the locations of the spar cap and the thicknesses of shear webs are taken as design variables. The optimisation model takes account of five constraints, i.e. stress constraint, deformation constraint, vibration constraint, buckling constraint, and manufacturin...
Wind turbine is a device which converts kinetic energy from the wind into electrical power. Wind tur...
An extensively automated optimization procedure is presented for a horizontal axis wind turbine (HAW...
A composite blade structure for a 2 MW horizontal axis wind turbine is optimally designed. Design re...
A wind turbine blade generally has complex structures including several layers of composite material...
Structural optimisation of a wind turbine blade is presented in this work. The optimisation was perf...
Structural optimisation of a wind turbine blade is presented in this work. The optimisation was perf...
This study presents experimental testing on a 13 m long glass-fibre epoxy composite wind turbine bla...
AbstractMaterials used in the development and construction of the blades are essential for the prope...
This paper presents a method to optimise the material layout of a fibreglass-reinforced composite co...
The design of an optimised horizontal axis 5-meter-long wind turbine rotor blade in according with I...
By accounting for almost 25% of the capital cost of an OWT (offshore wind turbine), optimisation of ...
Currently, wind energy, a reliable, affordable, and clean energy source, contributes to 16% of Europ...
Purpose Wind turbines are one of the best candidates to solve the problem of increasing energy deman...
Static load and modal testing of two blades from a 15 kW wind turbine is presented. The two blades a...
In wind turbine blades, the complex resultant geometry due to the aerodynamic design cannot be modif...
Wind turbine is a device which converts kinetic energy from the wind into electrical power. Wind tur...
An extensively automated optimization procedure is presented for a horizontal axis wind turbine (HAW...
A composite blade structure for a 2 MW horizontal axis wind turbine is optimally designed. Design re...
A wind turbine blade generally has complex structures including several layers of composite material...
Structural optimisation of a wind turbine blade is presented in this work. The optimisation was perf...
Structural optimisation of a wind turbine blade is presented in this work. The optimisation was perf...
This study presents experimental testing on a 13 m long glass-fibre epoxy composite wind turbine bla...
AbstractMaterials used in the development and construction of the blades are essential for the prope...
This paper presents a method to optimise the material layout of a fibreglass-reinforced composite co...
The design of an optimised horizontal axis 5-meter-long wind turbine rotor blade in according with I...
By accounting for almost 25% of the capital cost of an OWT (offshore wind turbine), optimisation of ...
Currently, wind energy, a reliable, affordable, and clean energy source, contributes to 16% of Europ...
Purpose Wind turbines are one of the best candidates to solve the problem of increasing energy deman...
Static load and modal testing of two blades from a 15 kW wind turbine is presented. The two blades a...
In wind turbine blades, the complex resultant geometry due to the aerodynamic design cannot be modif...
Wind turbine is a device which converts kinetic energy from the wind into electrical power. Wind tur...
An extensively automated optimization procedure is presented for a horizontal axis wind turbine (HAW...
A composite blade structure for a 2 MW horizontal axis wind turbine is optimally designed. Design re...