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Wind power gives variable power which is extremely constant from year to year but which has considerable variation over much shorter time scales. It is for that reason utilized in conjunction with other electric source of power to provide a trustworthy supply. As the proportion of wind power in a region increases, a need to update the grid, and a decreased capability to supplant conventional production can occur. Power management methods such as having excess capability, geographically distributed turbines, dispatchable support sources, sufficient hydroelectric power, exporting and importing power to neighboring locations, using vehicle-to-grid methods or minimizing demand when wind production is low, can oftentimes overcome these problems.In addition, weather condition forecasting allows the electrical energy network to be prepared for the foreseeable variations in production that occur.
The amount of wind energy that can be generated depends primarily on the size of wind turbine and the yearly average wind speed at the website. There are some other aspects that impact energy capture such as neighboring hills, trees and structures (or other wind turbines) that could block the wind, and the effectiveness of the wind turbine itself. Presuming your turbine has been well sited and is from a good quality manufacturer the most crucial factor will be the annual average wind speed.
In a wind farm, specific turbines are adjoined with a medium voltage (typically 34.5 kV), power collection system and interactions network. In basic, a range of 7D (7 × Rotor Size of the Wind Turbine) is set between each turbine in a fully established wind farm. At a substation, this medium-voltage electrical current is increased in voltage with a transformer for connection to the high voltage electric power transmission system.
Wind turbine – wikipedia, free encyclopedia, A wind turbine is a device that converts kinetic energy from the airborne wind turbines have been investigated many times but have yet to produce significant energy..
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