A multi-objective optimization method for the structural design of horizontal-axis wind turbine (HAWT) blades is presented. The main goal is to minimize the weight and cost of the blade which uses glass fiber reinforced plastic (GFRP) coupled with carbon fiber reinforced plastic (CFRP) materials. The number and the location of layers in the spar cap, the width of the spar cap and the position of the shear webs are employed as the design variables, while the strain limit, blade/tower clearance limit and vibration limit are taken into account as the constraint conditions. The optimization of the design of a commercial 1.5 MW HAWT blade is carried out by combining FEM analysis and a multi-objective evolutionary algorithm under ultimate (extre...
The main purpose of this project was the creation of a tool, based on the research performed by Sche...
This paper presents an aerodynamic shape optimization methodology for rotor blades of horizontal axi...
The design of wind turbine blades is a true multi-objective engineering task. The aerodynamic effect...
A multi-objective optimization method for the structural design of horizontal-axis wind turbine (HAW...
A procedure based on MATLAB combined with ANSYS is presented and utilized for the multi-objective ae...
A procedure based on MATLAB combined with ANSYS is presented and utilized for the multi-objective ae...
A procedure based on MATLAB combined with ANSYS is presented and utilized for the aerodynamic and st...
A procedure based on MATLAB combined with ANSYS is presented and utilized for the aerodynamic and st...
An extensively automated optimization procedure is presented for a horizontal axis wind turbine (HAW...
The AOC 15/50 wind turbine blade has been considered as the baseline configuration for a structural ...
procedure based on MATLAB combined with ANSYS is presented and utilized for the aerodynamic and stru...
This paper describes a multi-objective optimization method for the design of stall-regulated horizon...
Purpose Wind turbines are one of the best candidates to solve the problem of increasing energy deman...
This paper describes an optimization method for the design of horizontal axis wind turbines using th...
A wind turbine rotor should capture as much wind power as possible. However, the more energy extract...
The main purpose of this project was the creation of a tool, based on the research performed by Sche...
This paper presents an aerodynamic shape optimization methodology for rotor blades of horizontal axi...
The design of wind turbine blades is a true multi-objective engineering task. The aerodynamic effect...
A multi-objective optimization method for the structural design of horizontal-axis wind turbine (HAW...
A procedure based on MATLAB combined with ANSYS is presented and utilized for the multi-objective ae...
A procedure based on MATLAB combined with ANSYS is presented and utilized for the multi-objective ae...
A procedure based on MATLAB combined with ANSYS is presented and utilized for the aerodynamic and st...
A procedure based on MATLAB combined with ANSYS is presented and utilized for the aerodynamic and st...
An extensively automated optimization procedure is presented for a horizontal axis wind turbine (HAW...
The AOC 15/50 wind turbine blade has been considered as the baseline configuration for a structural ...
procedure based on MATLAB combined with ANSYS is presented and utilized for the aerodynamic and stru...
This paper describes a multi-objective optimization method for the design of stall-regulated horizon...
Purpose Wind turbines are one of the best candidates to solve the problem of increasing energy deman...
This paper describes an optimization method for the design of horizontal axis wind turbines using th...
A wind turbine rotor should capture as much wind power as possible. However, the more energy extract...
The main purpose of this project was the creation of a tool, based on the research performed by Sche...
This paper presents an aerodynamic shape optimization methodology for rotor blades of horizontal axi...
The design of wind turbine blades is a true multi-objective engineering task. The aerodynamic effect...