Savonius wind turbine
Adapted from Wikipedia · Discoverer experience
Savonius wind turbines are a special kind of wind turbine that helps turn wind into useful energy. They are called vertical-axis wind turbines because their spinning parts go up and down instead of side to side like some other turbines. These turbines have special shapes, called aerofoils, that catch the wind and make a spinning motion.
The spinning parts, or shaft, can be fixed to the ground or held up in the air with special systems. This makes Savonius turbines useful in many places where we need clean energy from the wind. They are strong and can work well even when the wind does not blow very fast.
Origin
The Savonius wind turbine was created by a Finnish engineer named Sigurd Johannes Savonius in 1922 and he got a patent for it in 1926. People in Europe had tried using curved blades on tall wind turbines for many years before that. The first written record of this idea comes from an engineer named Fausto Veranzio in 1616. He described several tall wind turbines with curved blades in his book. However, Savonius was the first to fully develop this type of turbine. He tested his design on small boats on lakes in Finland. He also applied for two patents for this turbine design in the United States, one in 1925 and another in 1928.
Operation
The Savonius turbine is one of the simplest types of turbines. It is a drag-type device made of two or three scoops. If you look at the rotor from above, a two-scoop machine looks like the letter "S". The scoops spin because they feel less force when moving against the wind than when moving with the wind. Because they are drag-type devices, Savonius turbines do not get as much power from the wind as other turbines. They have some good points, like making little noise, working well in low wind speeds, and not needing to face a special wind direction.
Power and rotational speed
According to Betz's law, the most power we can get from wind is figured by a special math formula. In real life, we can only get about half of that power. For a Savonius wind turbine, the real power we can get is around 20% of the most possible power.
The way fast the rotor turns depends on the wind speed and the size of the rotor. For example, a Savonius rotor about the size of an oil barrel in a wind of 10 meters per second can make about 120 watts of power and turn about 190 times every minute.
Use
Savonius turbines are used when cost or reliability is more important than efficiency. Many anemometers, which measure wind speed, are Savonius turbines because efficiency does not matter for this job. Larger Savonius turbines have been used to make electric power on deep-water buoys. These buoys need only small amounts of power and do not get much maintenance. Their design is simpler than other turbines because they do not need a special part to face the wind, and they can start turning on their own.
One common use of Savonius turbines is the Flettner ventilator, seen on roofs of vans and buses. It was made in the 1920s by German engineer Anton Flettner to help cool vehicles by moving air. These vents are still made in the UK today. Savonius turbines have also helped power science stations in Antarctica. In Europe, small Savonius turbines are sometimes used in signs that spin to catch people’s attention.
Tethered airborne Savonius turbines
- Airborne wind turbines
- Kite types
When the Savonius rotor axis is set horizontally and tethered, it can create movement in the air. Many patents and products use the lift that happens when the Savonius rotor spins. This spin can be used to make sound, heat, or electricity.
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