A steam turbine functions when highly pressured gaseous water, or steam, passes along the rotor through the multiple alternatively fixed and moving blades. A running generator converts the resultant kinetic energy into e... More »

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Water turbines produce electricity from kinetic energy by using the force of falling water to stimulate an electric generator. There are two types of water turbines: impulse turbines and reaction turbines. According to t... More »

Water turbines convert the motion of moving water into rotating mechanical energy by catching the water with large blades. They are important to the structure and function of hydropower plants. There are different models... More »

In a hydroelectric power plant, a large volume of water flows down a slope to turn a turbine, which turns a metal shaft in a generator, consequently producing electricity. A similar principle applies for geothermal power... More »

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According to the Department of Energy, a wind turbine uses the force of the wind to spin propeller blades, which in turn spin an electric generator to produce current. Inside the generator, a coil of wire moves through a... More »

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The Kaplan turbine works because the curved blades of the rotor are optimized to turn in relation to the velocity of the water flowing through the turbine. The curved blades generate maximum force to produce the most amo... More »

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Geothermal power is generated by capturing and utilizing the steam and hot water produced by geothermal springs. As cold water seeps into the Earth’s crust, a layer of hot and molten rock heats it up and causes it to ris... More »

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