Log in Sign up
Back to Discover
💻

Power station

technology Maturity 9-11

Big buildings make power.

Power station in blocks.jpg
Power station in blocks.jpg
They make the power for your lights. This power travels to your home. It can come from sun or wind. It can come from water too. It helps us all. Can you turn on a light?
Power plant control room.jpg
Power plant control room.jpg

48 words

Big buildings make power.

Power station in blocks.jpg
Power station in blocks.jpg
They make the power for your lights. This power travels to your home. It can come from the sun or the wind. It can come from water too.
Glen Canyon Dam and Bridge.JPG
Glen Canyon Dam and Bridge.JPG
Some buildings burn coal to make power. Others use heat from deep in the Earth.
NesjavellirPowerPlant edit2.jpg
NesjavellirPowerPlant edit2.jpg
Most of this power comes from spinning a machine. This machine turns motion into power. It is a very busy job!
Power plant control room.jpg
Power plant control room.jpg

79 words

A power station is a large place that makes electricity.

Power station in blocks.jpg
Power station in blocks.jpg
Most stations connect to an electrical grid. This is a network that carries power to homes. Many stations use a generator to make electricity. A generator is a machine that turns motion into power. It works by moving a magnetic field near a conductor. This movement creates an electric current.
Edison Central Station Dynamos and Engine.jpg
Edison Central Station Dynamos and Engine.jpg

There are many ways to make this motion. Some plants burn fossil fuels like coal, oil, or gas. These are called thermal power stations. They use heat to make steam. The steam turns a turbine, which is a machine with blades.

RatcliffePowerPlantBlackAndWhite.jpg
RatcliffePowerPlantBlackAndWhite.jpg
Other plants use different sources. Nuclear power plants use heat from a nuclear reactor. Geothermal plants use steam from hot rocks underground.
NesjavellirPowerPlant edit2.jpg
NesjavellirPowerPlant edit2.jpg
Some plants use wind or sun to make power. Hydroelectric plants use moving water to spin the generators.
Glen Canyon Dam and Bridge.JPG
Glen Canyon Dam and Bridge.JPG
Some plants run all the time to provide base load power. Other plants only run during busy times to provide peak power.

177 words

A power station is a large facility that makes electric power.

Power station in blocks.jpg
Power station in blocks.jpg
Most of these stations connect to an electrical grid. This grid is a network that carries power to many places. Many stations use a machine called a generator. This machine converts mechanical power into electricity. It works when there is motion between a magnetic field and a conductor. This motion creates an electric current that we can use.
Edison Central Station Dynamos and Engine.jpg
Edison Central Station Dynamos and Engine.jpg

There are many ways to make the motion needed for a generator. Most stations in the world burn fossil fuels like coal, oil, or natural gas. These are called thermal power stations. In these plants, heat creates steam to turn a turbine. A turbine is a machine with blades that spins.

RatcliffePowerPlantBlackAndWhite.jpg
RatcliffePowerPlantBlackAndWhite.jpg
Other stations use different sources of energy. Nuclear power plants use heat from a nuclear reactor to make steam. Geothermal plants use steam from hot rocks deep underground.
NesjavellirPowerPlant edit2.jpg
NesjavellirPowerPlant edit2.jpg
Some plants use sunlight or wind to create power.

People have been building these stations for a long time. In 1871, Zénobe Gramme invented a very strong generator. In 1878, William, Lord Armstrong built a hydroelectric station in England. This station used water from lakes to power lights and heating. In 1882, Thomas Edison helped build the first public coal-fired station in London.

Edison Central Station Dynamos and Engine.jpg
Edison Central Station Dynamos and Engine.jpg
Later that year, Edison opened the Pearl Street Station in New York. It provided light to the lower Manhattan area until a fire in 1890. George Westinghouse later helped make electricity better for long distances.

Different stations have different jobs to do. Some are base load plants that run almost all the time. They provide the steady power that people always need. Other stations are peaking power plants. These only run during busy times when demand is very high.

Power plant control room.jpg
Power plant control room.jpg
For example, a gas turbine can start very quickly. This helps when many people turn on lights at once. Some plants are also combined cycle plants. These use both a gas turbine and a steam turbine to be more efficient.

Power stations are part of our everyday lives. We use their electricity to light our homes and run machines.

Glen Canyon Dam and Bridge.JPG
Glen Canyon Dam and Bridge.JPG
Hydroelectric plants use moving water from places like dams to make power. Solar plants use giant arrays of panels to catch sunlight.
Giant photovoltaic array.jpg
Giant photovoltaic array.jpg
Wind farms use large turbines to catch the wind. Even waste from sugar cane or landfills can be used as fuel. All these different methods help keep our world running smoothly.

429 words

A power station is an industrial facility designed to generate electric power. These plants are usually connected to an electrical grid, which is a network that carries electricity to homes and businesses. Most power stations rely on generators to do this work. A generator is a rotating machine that converts mechanical power into three-phase electric power. This process happens because of the relative motion between a magnetic field and a conductor. This movement creates the electric current that flows through our wires.

Power station in blocks.jpg
Power station in blocks.jpg

Thermal power stations are a very common type of plant. These facilities use a heat engine to transform thermal energy into rotational energy. Most of these are known as steam power stations because they produce steam to do the work. The heat often comes from burning fossil fuels like coal, oil, or natural gas. In a coal-fired station, coal is burned in a large boiler to create steam. This steam then drives a steam turbine and a generator. It is important to note that the second law of thermodynamics means not all thermal energy can become mechanical power. Some heat is always lost to the environment.

RatcliffePowerPlantBlackAndWhite.jpg
RatcliffePowerPlantBlackAndWhite.jpg

Engineers use several methods to make these thermal plants more efficient. One method is called cogeneration, or combined heat-and-power (CHP). In a CHP plant, the heat that would normally be wasted is used for industrial processes or district heating. Another advanced method is the combined cycle plant. These plants use two different thermodynamic cycles together. A gas turbine burns natural gas to create power first. Then, the hot exhaust gases from that turbine are used to create steam for a second turbine. This "top" and "bottom" cycle approach creates much higher efficiency than a single cycle could alone.

Other types of power stations use different energy sources to create motion. Nuclear power plants use the fission process inside a reactor core to create intense heat. This heat produces steam to operate a turbine and generator. In the United States, nuclear power provides about 20 percent of all electric generation. Geothermal power plants use steam that comes from hot rocks deep underground. These rocks are heated by the decay of radioactive material in the Earth's core.

NesjavellirPowerPlant edit2.jpg
NesjavellirPowerPlant edit2.jpg
Solar thermal plants use sunlight to boil water and create steam.
Giant photovoltaic array.jpg
Giant photovoltaic array.jpg
There are also biomass plants that use waste from sugar cane or landfills as fuel.

We can also classify power stations by how they are used to meet demand. Base load power plants run nearly all the time to provide a steady supply of energy. These are often large coal-fired, nuclear, or hydroelectric plants. They are optimized for low fuel costs but cannot start or stop quickly. Peaking power plants are different. They only run during periods of high demand, which might last only one or two hours. Gas turbines and internal combustion engines are good for this because they can start up very rapidly.

Power plant control room.jpg
Power plant control room.jpg

The history of these facilities shows how much technology has changed. In 1871, Zénobe Gramme invented a generator for commercial industrial use. In 1878, William, Lord Armstrong built a hydroelectric station at Cragside, England. This station used water from local lakes to power lights and heating. In 1882, Thomas Edison and Edward Johnson built the first public coal-fired station in London. Later that year, Edison opened the Pearl Street Station in New York. That station used reciprocating steam engines to turn direct-current (DC) generators.

Edison Central Station Dynamos and Engine.jpg
Edison Central Station Dynamos and Engine.jpg

As time passed, the way we move electricity improved. George Westinghouse developed an alternating current (AC) system in 1886. This system used a transformer to step up voltage for long-distance transmission. It then stepped the voltage back down for indoor use. This was much more efficient than the DC systems, which were limited by voltage drop. The "war of the currents" eventually led to AC becoming the standard. The invention of the steam turbine around 1906 allowed plants to grow much larger. Generators were no longer limited by the slow speeds of old engines. This allowed for the massive generating capacity we see in the world today.

693 words
🖼️ Images & Media (16)
File:Kraftwerk Niederaußem 2006.jpg
Kraftwerk Niederaußem 2006.jpg
File:Edison Central Station Dynamos and Engine.jpg
Edison Central Station Dynamos and Engine.jpg
File:Strojarnica Hidroelektrane Krka - Vjekoslav Meichsner (desno) sa suradnicima.jpg
Strojarnica Hidroelektrane Krka -...
File:Power station in blocks.jpg
Power station in blocks.jpg
File:Ikata Nuclear Powerplant.JPG
Ikata Nuclear Powerplant.JPG
File:Martinlaakson voimalaitos.JPG
Martinlaakson voimalaitos.JPG
File:NesjavellirPowerPlant edit2.jpg
NesjavellirPowerPlant edit2.jpg
File:RatcliffePowerPlantBlackAndWhite.jpg
RatcliffePowerPlantBlackAndWhite.jpg
File:Cooling tower power station Dresden.jpg
Cooling tower power station Dresden.jpg
File:Glen_Canyon_Dam_and_Bridge.JPG
Glen_Canyon_Dam_and_Bridge.JPG
File:Giant photovoltaic array.jpg
Giant photovoltaic array.jpg
File:GreenMountainWindFarm Fluvanna 2004.jpg
GreenMountainWindFarm Fluvanna 2004.jpg

+ 4 more

Up Next
💻
Fossil fuel power station
Technology
More to explore

What is Nepedia?

A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.