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  2. Wind energy software - Wikipedia

    en.wikipedia.org/wiki/Wind_energy_software

    Easily coupled with other simulation environments such as Simulink and Dymola, it is suitable for aerodynamic optimization, fluid-structure interaction problems, and unsteady control system simulation. Ashes is a software package for analyzing aerodynamic and mechanical forces for onshore and offshore horizontal axis wind turbines.

  3. Flexcom - Wikipedia

    en.wikipedia.org/wiki/Flexcom

    Flexcom has been benchmarked against other simulation codes for modelling a 5MW reference wind turbine hosted on a floating semi-submersible platform [3] and a fixed steel jacket structure, [4] based on publicly available data from the International Energy Agency (IEA) and NREL.

  4. QBlade - Wikipedia

    en.wikipedia.org/wiki/QBlade

    The purpose of this software is the design and aerodynamic simulation of wind turbine blades. The integration in XFOIL allows for the user to rapidly design custom airfoils and compute their performance curves, Extrapolating the performance data to a range of 360° Angle of attack , and directly integrate them into a wind turbine rotor simulation.

  5. WindSim - Wikipedia

    en.wikipedia.org/wiki/WindSim

    WindSim is wind energy software that uses CFD to optimize wind turbine placement in onshore and offshore wind farms. WindSim is used worldwide by wind resource assessment professionals to help design more profitable wind farms. [1] [failed verification]

  6. Wind turbine design - Wikipedia

    en.wikipedia.org/wiki/Wind_turbine_design

    An example of a wind turbine, this 3 bladed turbine is the classic design of modern wind turbines Wind turbine components : 1-Foundation, 2-Connection to the electric grid, 3-Tower, 4-Access ladder, 5-Wind orientation control (Yaw control), 6-Nacelle, 7-Generator, 8-Anemometer, 9-Electric or Mechanical Brake, 10-Gearbox, 11-Rotor blade, 12-Blade pitch control, 13-Rotor hub

  7. Global Wind Atlas - Wikipedia

    en.wikipedia.org/wiki/Global_Wind_Atlas

    The latest release of the Global Wind Atlas (3.0) was launched on October 25, 2019, featuring further methodological modeling improvements, all new raw data (based on 10 years of mesoscale time-series model simulations), data coverage spanning 200 kilometers offshore, two additional heights (data now at 10, 50, 100, 150 and 200 m above ground ...