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  2. File:Wind turbine diagram.svg - Wikipedia

    en.wikipedia.org/wiki/File:Wind_turbine_diagram.svg

    This SVG image contains embedded raster graphics. Such images are liable to produce inferior results when scaled to different sizes (as well as possibly being very inefficient in file size).

  3. File:Wind.turbine.yaw.system.configurations.svg - Wikipedia

    en.wikipedia.org/wiki/File:Wind.turbine.yaw...

    You are free: to share – to copy, distribute and transmit the work; to remix – to adapt the work; Under the following conditions: attribution – You must give appropriate credit, provide a link to the license, and indicate if changes were made.

  4. 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 ...

  5. Yaw drive - Wikipedia

    en.wikipedia.org/wiki/Yaw_drive

    The yaw system is located between the wind turbine nacelle and tower. 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.

  6. Yaw bearing - Wikipedia

    en.wikipedia.org/wiki/Yaw_bearing

    Schematic representation of the main wind turbine components. The yaw system is located between the wind turbine nacelle and tower.. The yaw bearing is the most crucial and cost intensive component of a yaw system found on modern horizontal axis wind turbines.

  7. 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

  8. Template:Wind power/doc - Wikipedia

    en.wikipedia.org/wiki/Template:Wind_power/doc

    The template is suitable for transcluding at the bottoms of articles relating to wind power. This template's initial visibility currently defaults to autocollapse , meaning that if there is another collapsible item on the page (a navbox, sidebar , or table with the collapsible attribute ), it is hidden apart from its title bar; if not, it is ...

  9. Crosswind kite power - Wikipedia

    en.wikipedia.org/wiki/Crosswind_kite_power

    Crosswind kite power is power derived from airborne wind-energy conversion systems (AWECS, also AWES) or crosswind kite power systems (CWKPS). The kite system is characterized by energy-harvesting parts flying transversely to the direction of the ambient wind, i.e., to crosswind mode; sometimes the entire wing set and tether set are flown in crosswind mode.