2009•Energy Research and UtilizationRequires access

Simulation study on Blade Design and Aerodynamic Function of Wind Tur-bine

YU Jian-fen

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Abstract

The blades and rotors are key equipments that catch wind power in wind turbine generator. Design the 3D wind turbine blade with some aero theory and generator parameter. Builds calculated model of 3D blade of wind turbine in Gambit, and uses Fluent to numerical simulate the aerodynamic performance of 3D wind turbine blade. Simulates the aero flow fields, and calculate the lift, drag, and torque, and approve the feasibility and reliability to aerodynamic numerical simulation of wind turbine, and calculate the unit power and wind power coefficient. Simulation and analyses would understand the aerodynamic performance and character of wind turbine blade, and optimize the unit design to improve the research ability, and supply technology parameter and advice to the design and research of blade.

About this research paper

What this paper is about

The blades and rotors are key equipments that catch wind power in wind turbine generator. Design the 3D wind turbine blade with some aero theory and generator parameter. Builds calculated model of 3D blade of wind turbine in Gambit, and uses Fluent to numerical simulate the aerodynamic performance of 3D wind turbine blade. Simulates the aero flow fields, and calculate the lift, drag, and torque, and approve the feasibility and reliability to aerodynamic numerical simulation of wind turbine, and calculate the unit power and wind power coefficient. Simulation and analyses would understand the aerodynamic performance and character of wind turbine blade, and optimize the unit design to improve the research ability, and supply technology parameter and advice to the design and research of blade.

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Available abstract

The blades and rotors are key equipments that catch wind power in wind turbine generator. Design the 3D wind turbine blade with some aero theory and generator parameter. Builds calculated model of 3D blade of wind turbine in Gambit, and uses Fluent to numerical simulate the aerodynamic performance of 3D wind turbine blade. Simulates the aero flow fields, and calculate the lift, drag, and torque, and approve the feasibility and reliability to aerodynamic numerical simulation of wind turbine, and calculate the unit power and wind power coefficient. Simulation and analyses would understand the aerodynamic performance and character of wind turbine blade, and optimize the unit design to improve the research ability, and supply technology parameter and advice to the design and research of blade.

Key concepts: Aerodynamics, Gambit, Turbine, Marine engineering, Fluent, Wind power, Turbine blade, Engineering

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