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Turbine

technology Maturity 9-11

A turbine is a machine that spins.

Gfa 17 641006 2-0002 Turbinen.jpg
Gfa 17 641006 2-0002 Turbinen.jpg
It uses moving air or water. The moving stuff hits blades to make them turn. This can make power for your home. It is very helpful!
Dampfturbine Montage01.jpg
Dampfturbine Montage01.jpg
Can you find a turbine?

45 words

A turbine is a machine that spins.

Turbines impulse v reaction.svg
Turbines impulse v reaction.svg
It uses moving things like gas or water. The moving stuff hits blades to make them turn.

This spinning can make power. It can make electricity for your home.

Gfa 17 641006 2-0002 Turbinen.jpg
Gfa 17 641006 2-0002 Turbinen.jpg
It can even help push big ships.

Some turbines use a fast stream of water. Other ones use steam. The moving parts are called a rotor.

Dampfturbine Montage01.jpg
Dampfturbine Montage01.jpg
These parts have blades on them.

Windmills are a type of turbine too. They use the wind to spin. This is a very old idea.

Turbines help us do many jobs. They are very useful machines!

109 words

A turbine is a machine that spins.

Turbines impulse v reaction.svg
Turbines impulse v reaction.svg
It takes power from a moving fluid. A fluid can be gas, steam, or water. The moving fluid hits blades on a rotor. A rotor is a part that turns. This spinning can make useful work. It can also make electricity with a generator.
Colbert Fossil Plant Tandem-Compound Turbine Rotor, US Space and Rocket Center, Huntsville, AL.jpg
Colbert Fossil Plant Tandem-Compound Turbine Rotor, US Space and Rocket Center, Huntsville, AL.jpg

There are two main ways a turbine works. One way is called an impulse turbine. In this way, a fast jet of fluid hits the blades. This jet changes direction to make the rotor spin.

Turbines impulse v reaction.svg
Turbines impulse v reaction.svg
The other way is called a reaction turbine. In this way, the pressure of the fluid changes as it moves through the blades. This change in pressure helps the rotor turn.

Many modern machines use both ways at once. Steam turbines often use both. They are used in power plants to make electricity. Wind turbines are also a type of turbine. They use the wind to spin the rotor.

Gfa 17 641006 2-0002 Turbinen.jpg
Gfa 17 641006 2-0002 Turbinen.jpg

181 words

A turbine is a machine that turns to capture energy. It takes energy from a moving fluid, like water, steam, or gas. This moving fluid hits blades attached to a central shaft called a rotor. As the fluid pushes the blades, the rotor spins around. This spinning motion creates rotational energy that we can use for work. Often, this energy is used to spin a generator to make electricity.

Turbines impulse v reaction.svg
Turbines impulse v reaction.svg

There are two main ways a turbine can work. In an impulse turbine, a fast jet of fluid hits the blades. This jet changes direction to make the rotor spin. The pressure of the fluid does not change as it hits the moving blades. Instead, the pressure drops in the stationary parts before the jet reaches the rotor. In a reaction turbine, the fluid's pressure changes as it passes through the blades. This change in pressure helps create the force that turns the rotor.

Turbines impulse v reaction.svg
Turbines impulse v reaction.svg

People have studied the idea of spinning machines for a very long time. A man named Hero of Alexandria showed the principle with a device called an aeolipile in the first century AD. Later, the word "turbine" was used by a French engineer named Claude Burdin in 1822. A student of his named Benoit Fourneyron built the first practical water turbine. Later, different engineers made steam turbines better. Sir Charles Parsons invented the reaction turbine, while Gustaf de Laval invented the impulse turbine.

Dampfturbine Montage01.jpg
Dampfturbine Montage01.jpg

Turbines are used in many different places today. Steam turbines are used in power plants that use coal, oil, or nuclear fuel. These turbines can also power large ships. Some aircraft use gas turbine engines to fly. There are even special water turbines used to manage different flows of water. These include the Pelton, Francis, and Kaplan types.

Gfa 17 641006 2-0002 Turbinen.jpg
Gfa 17 641006 2-0002 Turbinen.jpg
Colbert Fossil Plant Tandem-Compound Turbine Rotor, US Space and Rocket Center, Huntsville, AL.jpg
Colbert Fossil Plant Tandem-Compound Turbine Rotor, US Space and Rocket Center, Huntsville, AL.jpg

You can see the effects of turbines in your own world. Wind turbines use the wind to spin their large blades. This is a type of reaction and impulse movement. Even the small humming sound in an old safety lamp comes from a tiny pneumatic turbine. Modern engineers use computers to design even better turbines. They use complex math to make sure the blades are the perfect shape.

WWS Pneumaticlamp.ogg
WWS Pneumaticlamp.ogg
Turbine inlet guide vanes of Atar turbojet.jpg
Turbine inlet guide vanes of Atar turbojet.jpg

399 words

A turbine is a rotary mechanical device designed to extract energy from a fluid flow. This fluid can be a gas, steam, or water. The machine converts the energy found in the moving fluid into useful work. In many modern systems, this rotational energy is used to drive a generator to produce electrical power.

Turbines impulse v reaction.svg
Turbines impulse v reaction.svg

The core of a turbine is the rotor assembly. This assembly consists of a shaft or drum with several blades attached to it. As a working fluid flows past these blades, it exerts a force that causes the rotor to spin. This process transfers energy from the fluid to the mechanical parts of the machine. To control the fluid, turbines often use a casing around the blades. This casing helps contain and direct the flow to ensure the energy transfer is efficient.

There are two primary ways a turbine can extract energy: through impulse or reaction. An impulse turbine works by changing the direction of a high-velocity fluid jet. The fluid is accelerated through stationary nozzles before it hits the moving blades. This process causes a change in the fluid's velocity, but not its pressure, as it passes through the rotor. Examples of this design include Pelton wheels and de Laval turbines. These machines are often most efficient when the fluid flow is low but the inlet pressure is very high.

A reaction turbine operates differently by reacting to the fluid's pressure or mass. In these machines, the fluid pressure changes as it moves through the rotor blades. Because of this pressure change, reaction turbines require a pressure casement to contain the fluid. This casing is essential for steam turbines or for water turbines that must maintain suction through a draft tube. Francis turbines and most modern steam turbines use this reaction principle. Reaction turbines are generally better suited for higher flow velocities or lower upstream pressure.

Dampfturbine Montage01.jpg
Dampfturbine Montage01.jpg
Modern engineering often combines both methods. Many steam turbines use both impulse and reaction stages in a single unit. Designers can vary the degree of reaction and impulse from the root of the blade to its outer edge. For example, in a steam turbine, the blades might be designed as impulse types at the base and transition to reaction types at the tips. This change happens because as the fluid expands at low pressure, the volume increases, and the rotation speed of the blade tips becomes much higher than the base.

The history of the turbine spans nearly two thousand years. Hero of Alexandria demonstrated the basic principle using a device called an aeolipile in the first century AD. Much later, in 1822, a French mining engineer named Claude Burdin used the word "turbine" in a formal memo. His student, Benoit Fourneyron, eventually built the first practical water turbine. The development of the steam turbine was driven by two key figures. Sir Charles Parsons invented the reaction turbine, while Gustaf de Laval invented the impulse turbine.

Gfa 17 641006 2-0002 Turbinen.jpg
Gfa 17 641006 2-0002 Turbinen.jpg

Today, turbines are vital to global infrastructure. Steam turbines drive generators in thermal power plants using coal, oil, or nuclear fuel.

Colbert Fossil Plant Tandem-Compound Turbine Rotor, US Space and Rocket Center, Huntsville, AL.jpg
Colbert Fossil Plant Tandem-Compound Turbine Rotor, US Space and Rocket Center, Huntsville, AL.jpg
They have also been used to power ships, such as the Turbinia, which was the first turbine-powered steam launch. In aviation, gas turbine engines provide the thrust needed for flight. Engineers use complex tools like computational fluid dynamics to optimize these machines. They also use the "specific speed" to determine the best turbine design for a specific power and flow rate.
Turbine inlet guide vanes of Atar turbojet.jpg
Turbine inlet guide vanes of Atar turbojet.jpg

600 words
🖼️ Images & Media (6)
File:Dampfturbine Montage01.jpg
Dampfturbine Montage01.jpg
WWS Pneumaticlamp.ogg
File:Turbines impulse v reaction.svg
Turbines impulse v reaction.svg
File:Turbine inlet guide vanes of Atar turbojet.jpg
Turbine inlet guide vanes of Atar turbojet.jpg
File:Gfa 17 641006 2-0002 Turbinen.jpg
Gfa 17 641006 2-0002 Turbinen.jpg
File:Colbert Fossil Plant Tandem-Compound Turbine Rotor, US Space and Rocket Center, Huntsville, AL.jpg
Colbert Fossil Plant Tandem-Compound...
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