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Cooling tower

technology Maturity 9-11

A cooling tower helps things stay cool.

Didcot power station cooling tower zootalures.jpg
Didcot power station cooling tower zootalures.jpg
It takes heat away from big machines. It uses water to do this. The water gets warm, so the tower cools it. This helps our buildings stay nice.
Loop Shopping Centre Exterior I.jpg
Loop Shopping Centre Exterior I.jpg
Can you see them in your town?

53 words

A cooling tower helps machines stay cool.

Didcot power station cooling tower zootalures.jpg
Didcot power station cooling tower zootalures.jpg
It takes heat away from them. Many towers use water to do this.

Warm water flows into the tower. The water turns into mist. This mist carries the heat away into the air.

Cooling Tower Fill Material.jpg
Cooling Tower Fill Material.jpg

Some towers are very large. They look like big chimneys. Others are small. You might see them on top of a building.

Loop Shopping Centre Exterior I.jpg
Loop Shopping Centre Exterior I.jpg

These towers help keep big plants running. They also help keep buildings cool. They are very useful tools.

95 words

A cooling tower is a tool used to remove heat.

Didcot power station cooling tower zootalures.jpg
Didcot power station cooling tower zootalures.jpg
Many machines get very hot while they work. This heat must be moved away. Often, a stream of water carries the heat.
Cooling Tower Fill Material.jpg
Cooling Tower Fill Material.jpg

Most towers use a way called evaporative cooling. Warm water flows into the tower. It trickles over parts called fill material. This lets the water turn into mist. As the water evaporates, it takes the heat with it. The heat goes into the air. Some people think this mist is smoke. It is actually just water vapor.

Clouds, natural and otherwise - geograph.org.uk - 778331.jpg
Clouds, natural and otherwise - geograph.org.uk - 778331.jpg

Other towers use dry cooling. These do not use mist. Instead, they use radiators to cool the water with air.

Towers come in many shapes. Some are large and look like tall chimneys. We call these hyperboloid structures.

Power station Westfalen. Cooling towers.jpg
Power station Westfalen. Cooling towers.jpg
These are often used at power plants. Other towers are small. You may see them on the roofs of hospitals or malls. These help keep buildings cool using air conditioning.

180 words

A cooling tower is a device used to reject waste heat into the air.

Didcot power station cooling tower zootalures.jpg
Didcot power station cooling tower zootalures.jpg
Many machines, like those in power plants or oil refineries, get very hot. To keep working well, they must move this heat away using a coolant. Usually, this coolant is a stream of water.
Cooling Tower Fill Material.jpg
Cooling Tower Fill Material.jpg
The tower cools the water so it can be used again. This process is very important for many industries. Without it, machines might get too hot to function.

There are two main ways these towers work. Many towers use evaporative cooling to remove heat. In these towers, warm water is sprayed or trickled through the structure. As the water turns into mist and evaporates, it carries the heat away.

Crossflow diagram.svg
Crossflow diagram.svg
This cools the remaining water to a lower temperature. Other towers use dry cooling instead. These do not use evaporation. Instead, they use radiators to cool the liquid using only air.
Package type cooling tower.JPG
Package type cooling tower.JPG

Cooling towers began in the 19th century. They were created to help condensers work better with steam engines. Condensers use cool water to turn steam back into liquid. This helps save fuel and makes engines more powerful. In the early 1900s, engineers found ways to recycle water in cities. One famous design was a hyperboloid tower. Dutch engineers Frederik van Iterson and Gerard Kuypers patented this shape in 1916. The first reinforced concrete version was built in 1917 in Heerlen. Later, the first UK versions appeared in 1924 at Liverpool.

These towers come in many different sizes. Some are tiny units on the roofs of hospitals or malls.

Loop Shopping Centre Exterior I.jpg
Loop Shopping Centre Exterior I.jpg
These help with air conditioning systems, also called HVAC. Larger industrial towers are used at massive power stations. A large coal plant might circulate 71,600 cubic meters of water every hour.
Cenk Endustri Field Erected Industrial Cooling Tower.JPG
Cenk Endustri Field Erected Industrial Cooling Tower.JPG
Some towers are even shaped like giant chimneys. The tallest cooling tower is at the Pingshan II Power Station in China. These large structures are often called hyperboloid towers.

It is easy to see how cooling towers link to our daily lives. You might see a large tower and think it is blowing smoke.

Clouds, natural and otherwise - geograph.org.uk - 778331.jpg
Clouds, natural and otherwise - geograph.org.uk - 778331.jpg
However, the white mist is actually just water vapor. This is the same thing you see when you breathe on a cold day. Cooling towers also help protect nature. By cooling water in a tower, we avoid dumping hot water into rivers. This keeps the water at a safe temperature for fish and other living things.

434 words

A cooling tower is a specialized device designed to reject waste heat into the atmosphere.

Didcot power station cooling tower zootalures.jpg
Didcot power station cooling tower zootalures.jpg
It accomplishes this by cooling a stream of coolant, which is usually water. This process is essential for many industrial systems to function safely and efficiently. Many large-scale operations, such as thermal and nuclear power stations, rely on these towers. They also support oil refineries, chemical plants, and large-scale HVAC systems for buildings. Without a way to remove excess heat, these vital systems would overheat and fail.

To understand how a cooling tower works, we must look at the process of heat transfer. Most towers use evaporative cooling to lower the temperature of the working fluid. In this process, warm water is sprayed or trickled through the tower structure. As the water comes into contact with air, some of it evaporates. This evaporation carries heat away from the remaining water.

Cooling Tower Fill Material.jpg
Cooling Tower Fill Material.jpg
This cools the water to a temperature near the wet-bulb air temperature. Other systems use dry cooling, which relies on radiators and air alone. These dry systems cool the fluid to near the dry-bulb air temperature without using evaporation.

Cooling towers are classified by how they pull air into the structure. The two main types are natural draft and induced draft towers. Natural draft towers do not use mechanical fans to move air. Instead, they rely on the natural movement of air to create a flow.

Cooling tower power station Dresden.jpg
Cooling tower power station Dresden.jpg
Induced draft towers use fans to pull air through the system. There are also forced draft towers that push air into the unit. Towers can also be categorized by their build. Package type towers are factory-assembled and compact, making them easy to transport by truck.
Package type cooling tower.JPG
Package type cooling tower.JPG
Field-erected towers are much larger and are built directly at the site.

The history of cooling towers is tied to the evolution of the steam engine. In the 19th century, engineers developed condensers to improve steam engine efficiency. A condenser uses cool water to turn steam back into liquid. This process reduces back pressure, which lowers fuel consumption and increases power. As land became limited in cities, cooling towers replaced large cooling ponds. In 1916, Dutch engineers Frederik van Iterson and Gerard Kuypers patented the hyperboloid design. The first reinforced concrete hyperboloid tower was built in 1917 in Heerlen. The first such towers in the United Kingdom appeared in 1924 at the Lister Drive power station.

The scale of these structures can be quite massive. Hyperboloid towers are often very tall and wide. The world's tallest cooling tower is located at the Pingshan II Power Station in China.

Stairway to nowhere^ - geograph.org.uk - 455003.jpg
Stairway to nowhere^ - geograph.org.uk - 455003.jpg
In a large coal-fired power plant, the water circulation is enormous. A typical 700 MWth plant might circulate 71,600 cubic meters of water every hour. This requires a constant supply of make-up water, often around 5 percent of the total flow. In contrast, a large refinery processing 40,000 metric tonnes of crude oil daily circulates about 80,000 cubic meters of water per hour.

It is common for people to mistake the emissions from a cooling tower for smoke.

Clouds, natural and otherwise - geograph.org.uk - 778331.jpg
Clouds, natural and otherwise - geograph.org.uk - 778331.jpg
However, these emissions are actually just water vapor and do not contribute to a carbon footprint. Cooling towers also provide an important environmental service regarding thermal pollution. If a plant used once-through cooling, it would discharge very hot water into local lakes or rivers. This can kill fish and other aquatic life or encourage invasive species. By using a tower, the heat is dissipated into the atmosphere instead.

Cooling towers connect to many different fields of science and engineering. In HVAC systems, they work with liquid-cooled chillers to manage building temperatures. This is often more efficient than air-cooled chillers because they can use lower wet-bulb temperatures.

Loop Shopping Centre Exterior I.jpg
Loop Shopping Centre Exterior I.jpg
In the field of thermodynamics, researchers study cycles like the Maisotsenko Cycle. This cycle uses the latent heat of evaporating water to reach temperatures lower than the ambient wet-bulb temperature. Understanding these heat exchange systems is vital for managing energy and water resources globally.

692 words
🖼️ Images & Media (32)
File:Induced Draft Cooling Tower for HVAC.jpg
Induced Draft Cooling Tower for HVAC.jpg
File:Didcot power station cooling tower zootalures.jpg
Didcot power station cooling tower zootalures.jpg
File:Power station Westfalen. Cooling towers.jpg
Power station Westfalen. Cooling towers.jpg
File:Cooling tower power station Dresden.jpg
Cooling tower power station Dresden.jpg
File:Barnard's fanless self-cooling tower.jpg
Barnard's fanless self-cooling tower.jpg
File:Staatsmijn Emma Koeltoren III - Brunssum - 20260911 - RCE.jpg
Staatsmijn Emma Koeltoren III - Brunssum...
File:Loop Shopping Centre Exterior I.jpg
Loop Shopping Centre Exterior I.jpg
File:Induced Draught Cooling Tower.jpg
Induced Draught Cooling Tower.jpg
File:Cooling Tower Fill Material.jpg
Cooling Tower Fill Material.jpg
File:Open loop Cooling Tower for DG Set.jpg
Open loop Cooling Tower for DG Set.jpg
File:Cenk Endustri Field Erected Industrial Cooling Tower.JPG
Cenk Endustri Field Erected Industrial...
File:Industrial Counterflow Cooling Towers.jpg
Industrial Counterflow Cooling Towers.jpg

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