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Electricity generation

technology Maturity 9-11

We use power for our homes.

Turbogenerator01.jpg
Turbogenerator01.jpg
It comes from big power plants. Some use wind or sun. Some use water from dams.
Hoover dam from air.jpg
Hoover dam from air.jpg
This power helps us see at night. It is very helpful. Do you use it every day?

44 words

We use power for our homes.

Turbogenerator01.jpg
Turbogenerator01.jpg
It comes from big power plants.
Hoover dam from air.jpg
Hoover dam from air.jpg
We must make this power. It is not found in nature.

Most power comes from moving parts. A spinning machine can make it. This machine uses a magnet and wire.

Stator winding at WPS.JPG
Stator winding at WPS.JPG
Moving the magnet makes the power.

Many things can make things spin. Wind can turn a big fan. Falling water can turn a wheel. Burning things can make steam.

Steam can turn a machine too. This is how most power is made. It uses heat to move things.

Some power comes from the sun. Solar panels catch light. They turn light into power. It is a very cool way to work.

122 words

We use electricity every day. But we cannot find it just lying around in nature.

Turbogenerator01.jpg
Turbogenerator01.jpg
We must make it in power plants.

Most electricity comes from a tool called a generator. A generator turns motion into power. This works through electromagnetic induction.

Stator winding at WPS.JPG
Stator winding at WPS.JPG
This is a way to make power by moving a magnet near wires. To make the generator spin, we use a turbine. A turbine is a machine with blades that rotates.
Turbine aalborg.jpg
Turbine aalborg.jpg

Many things can spin a turbine. Wind can turn large fans. Falling water can spin wheels in big dams.

Hoover dam from air.jpg
Hoover dam from air.jpg
Burning coal or gas can make steam. This steam spins a turbine to make power. Most of the world's power comes from using steam.

Some ways do not use spinning parts. Solar panels use the photovoltaic effect. This is a way to turn sunlight into power. Batteries also make power through chemical changes. In 1882, the first power station used a steam engine to make light. Today, we use many sources like wind, sun, and water to help our planet.

183 words

Electricity is something we use every single day. However, we cannot find it just lying around in nature.

Turbogenerator01.jpg
Turbogenerator01.jpg
We must produce it in special buildings called power plants. This happens by changing one kind of energy into electricity. Most power plants use machines called generators to do this work. These machines turn motion into the power we use at home.
Stator winding at WPS.JPG
Stator winding at WPS.JPG
This process is a very important part of our modern world.

Most electricity is made using a tool called a turbine. A turbine is a machine with blades that spins around.

Turbine aalborg.jpg
Turbine aalborg.jpg
This spinning motion drives a generator through electromagnetic induction. This is a way to make power by moving a magnet near loops of wire. Many different things can make a turbine spin. Wind can turn large fans in a field. Falling water can spin wheels inside big dams.
Hoover dam from air.jpg
Hoover dam from air.jpg
Burning coal or gas can also create steam to spin the blades.

People have been learning how to make electricity for a long time. A British scientist named Michael Faraday discovered the main rules in the 1820s. He found that moving a wire near a magnet creates power. Later, Thomas Edison and Nikola Tesla helped make electricity a part of daily life. In 1882, the first central power station opened on Pearl Street in New York. It used a steam engine to power lights for the public.

Edison Central Station Dynamos and Engine.jpg
Edison Central Station Dynamos and Engine.jpg
This changed how cities looked and worked forever.

Today, we use many different sources to create our power. About 41% of all electricity comes from burning coal to make steam. Natural gas is also very common and makes at least 20% of the world's power. We also use water, which provides about 16% of our electricity. Huge structures like the Three Gorges Dam in China can produce 22.5 GW of power.

ThreeGorgesDam-China2009.jpg
ThreeGorgesDam-China2009.jpg
Some places use solar panels to turn sunlight directly into electricity.

Learning about electricity helps us understand how our world stays running. Just like a battery stores energy for a small toy, power plants provide energy for whole cities. We are now learning to use more wind and solar power. This helps us limit climate change by using cleaner energy sources. As we use more electric cars and tools, our need for power grows.

World generation type yearly.png
World generation type yearly.png
Scientists are always looking for new ways to make electricity safely.

404 words

Electricity generation is the process of creating electric power from primary energy sources. Because consumable electricity is not freely available in nature, it must be produced by transforming other forms of energy.

Turbogenerator01.jpg
Turbogenerator01.jpg
This production typically occurs in power stations, which are also known as power plants. For the electric power industry, this stage happens just before the electricity is delivered to end users through transmission and distribution. It can also involve storing energy, such as through the pumped-storage method. This process is essential for powering our modern world, from homes to massive industrial systems.

Most commercial electricity is generated through a process called electromagnetic induction. This method relies on the principles discovered by British scientist Michael Faraday in the 1820s and early 1830s.

Stator winding at WPS.JPG
Stator winding at WPS.JPG
In a generator, mechanical energy is used to force a rotating magnetic field past stationary coils of wire. This movement of a magnet near conducting material, like copper wire, creates an electric current. To achieve this, a "prime mover" must drive the generator. This prime mover can be an engine or a turbine that provides the necessary kinetic energy to keep the generator spinning.

Turbines are the most common tools used to drive these generators. A turbine is a machine with blades that captures energy from various sources to create rotation.

Turbine aalborg.jpg
Turbine aalborg.jpg
Most global electricity is generated using a turbine driven by heat engines. These engines use combustion or nuclear fission to create the energy needed for motion. There are several distinct types of steam turbines. For example, coal-fired plants boil water to create steam, which accounts for about 41% of all electricity. Nuclear fission also creates heat to produce steam, providing less than 15% of the world's electricity. Other renewable sources like biomass or geothermal energy can also generate steam.

Other methods of mechanical generation use different natural forces. Hydroelectric power captures the energy from falling water or ocean currents to turn turbines.

Hoover dam from air.jpg
Hoover dam from air.jpg
Currently, hydroelectric plants provide approximately 16% of the world's electricity. Wind power is another major source, where wind turns large turbines; in 2018, wind produced around 5% of global electricity. Natural gas is also a significant contributor, generating at least 20% of the world's electricity. Some plants use a "combined cycle" method, which burns natural gas to drive a turbine and then uses the remaining heat to create steam for a second turbine.

Not all electricity requires a spinning generator. The photovoltaic effect allows solar cells to transform sunlight directly into DC electricity.

World generation type yearly.png
World generation type yearly.png
This industry has seen spectacular growth since the 1990s. Another method is electrochemistry, which is the direct transformation of chemical energy into electricity. This is how batteries work, providing power for portable and mobile applications. While primary cells act as direct power sources, secondary cells are rechargeable and used for energy storage. There are even niche methods like the piezoelectric effect or osmotic power, which can extract energy where salt and fresh water meet.

The history of electricity is marked by massive technological leaps. Before the late 19th century, electricity was mostly produced by chemical reactions or battery cells for uses like the telegraph. Central power station generation began in 1882 at the Pearl Street Station in New York.

Edison Central Station Dynamos and Engine.jpg
Edison Central Station Dynamos and Engine.jpg
This station used a steam engine to drive a dynamo, producing a DC current for public lighting. The development of alternating current (AC) and power transformers made it possible to transmit electricity over long distances with low loss. Major contributors like Thomas Alva Edison and Nikola Tesla helped move electricity into everyday life during the Second Industrial Revolution.

Today, the scale of electricity generation is immense. Large structures like the Three Gorges Dam in China have a massive capability of 22.5 GW.

ThreeGorgesDam-China2009.jpg
ThreeGorgesDam-China2009.jpg
The selection of power sources depends on local demand and economic factors. For instance, if natural gas well construction costs are below $10 per MWh, it is cheaper than burning coal. As the world moves to limit climate change, there is a push to phase out coal and gas plants. Instead, there is a forecast for much more solar and wind power to meet the increasing demand from electrified transport and homes.

704 words
🖼️ Images & Media (8)
File:Turbogenerator01.jpg
Turbogenerator01.jpg
File:Edison Central Station Dynamos and Engine.jpg
Edison Central Station Dynamos and Engine.jpg
File:Turbine aalborg.jpg
Turbine aalborg.jpg
File:Hoover dam from air.jpg
Hoover dam from air.jpg
File:Stator winding at WPS.JPG
Stator winding at WPS.JPG
File:Dreischluchtendamm hauptwall 2006.jpg
Dreischluchtendamm hauptwall 2006.jpg
File:World generation type yearly.png
World generation type yearly.png
File:ThreeGorgesDam-China2009.jpg
ThreeGorgesDam-China2009.jpg
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