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  2. Vestas V90-2MW - Wikipedia

    en.wikipedia.org/wiki/Vestas_V90-2MW

    The Vestas V90-2MW is a three-bladed upwind horizontal-axis wind turbine designed and manufactured by Vestas [citation needed] with versions for wind classes IIA and IIIA. [1] The V90-2MW has a tubular steel tower between 80 metres (260 ft) and 125 metres (410 ft) height.

  3. Wind turbine - Wikipedia

    en.wikipedia.org/wiki/Wind_turbine

    Wind turbines convert wind energy to electrical energy for distribution. Conventional horizontal axis turbines can be divided into three components: The rotor, which is approximately 20% of the wind turbine cost, includes the blades for converting wind energy to low-speed rotational energy. [63]

  4. Unconventional wind turbines - Wikipedia

    en.wikipedia.org/wiki/Unconventional_wind_turbines

    Counter-rotating wind turbines Light pole wind turbine. Unconventional wind turbines are those that differ significantly from the most common types in use.. As of 2024, the most common type of wind turbine is the three-bladed upwind horizontal-axis wind turbine (HAWT), where the turbine rotor is at the front of the nacelle and facing the wind upstream of its supporting turbine tower.

  5. Horizontal axis wind turbine - Wikipedia

    en.wikipedia.org/?title=Horizontal_axis_wind...

    Download as PDF; Printable version; In other projects Appearance. move to sidebar hide. ... Redirect page. Redirect to: Wind turbine#Horizontal axis; Retrieved from ...

  6. Wind-turbine aerodynamics - Wikipedia

    en.wikipedia.org/wiki/Wind-turbine_aerodynamics

    However, very high tip speeds also increase the drag on the blades, decreasing power production. Balancing these factors is what leads to most modern horizontal-axis wind turbines running at a tip speed ratio around 9. In addition, wind turbines usually limit the tip speed to around 80-90m/s due to leading edge erosion and high noise levels.

  7. Yaw system - Wikipedia

    en.wikipedia.org/wiki/Yaw_system

    The passive yaw systems utilize the wind force in order to adjust the orientation of the wind turbine rotor into the wind. In their simplest form these system comprise a simple roller bearing connection between the tower and the nacelle and a tail fin mounted on the nacelle and designed in such a way that it turns the wind turbine rotor into ...

  8. Yaw drive - Wikipedia

    en.wikipedia.org/wiki/Yaw_drive

    The yaw drive is an important component of the horizontal axis wind turbines' yaw system. To ensure the wind turbine is producing the maximal amount of electric energy at all times, the yaw drive is used to keep the rotor facing into the wind as the wind direction changes. This only applies for wind turbines with a horizontal

  9. 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