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The image is a labeled diagram of a wind turbine with 12 numbered components: 1. Wind, 2. Blades, 3. Rotor, 4. Drive shaft, 5. Gear box, 6. Generator, 7. Anemometer measures speed and direction of wind, 8. Rotating motor - moves turbine to face into the wind, 9. Cable - carries electric current, 10. Substation, 11. Homes, 12. Wind - reduced speed and energy. The diagram depicts a wind turbine with three blades facing left, connected to a rotor in the center, leading to a drive shaft going downwards into a gear box which is connected to a generator. An anemometer is mounted on top of the turbine, with a rotating motor next to it. A cable runs down the height of the tower into a substation on the ground, which has lines connecting to homes. Wind with reduced speed and energy is shown leaving behind the turbine.
Given the complexity of the image, the above description may not be entirely accurate.
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The diagram illustrates the process of producing electricity by using wind turbine. Overall, there are two main stages in this process, beginning with producing electric power and ending with distributing the electricity to each of the houses.
At the first stage, the wind blows and spins blades. After the rotor turns, the drive shaft transmits power to the gear box and starts the generator to create electrical energy. A wind monitor measures the speed and direction of the wind, thereby adjusting the blades spin according to the wind speed. A rotating motor moves turbine to face into the wind. Once the electrical energy is created, it is transmitted to the substation by cable which carries electric current.
Finally, the electricity at the substation is adjusted and distributed to households, while the wind goes through the blades and its speed and energy are reduced.
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