Log in Sign up
Back to Discover
💻

Evaporative cooler

technology Maturity 9-11

Water can help cool the air.

MistingFan.jpg
MistingFan.jpg
It works like your sweat. When water turns into air, it takes heat away. This makes the air feel cool. It is great for dry places. Can you feel a cool breeze?

39 words

Water can cool the air.

MistingFan.jpg
MistingFan.jpg
It works like your sweat. When water turns into air, it takes heat away. This makes the air feel cool.

People have used this for a long time.

Qanat wind tower.svg
Qanat wind tower.svg
In old Egypt, they used clay jars. The water inside the jars stayed cool.

Some machines use a fan. The fan pulls air through wet pads. This helps the water turn into air.

This works best in dry lands.

RANCHHOUSE2.JPG
RANCHHOUSE2.JPG
It can also add moisture to the air. This feels good on dry skin.

It uses less power than other tools. It is a smart way to stay cool.

106 words

An evaporative cooler is a device that cools air.

Evaporative cooler annotated.svg
Evaporative cooler annotated.svg
It works by turning liquid water into water vapor. This change is called evaporation. To evaporate, water must take heat from the air. This process makes the air temperature drop.
MistingFan.jpg
MistingFan.jpg

This method is very different from most air conditioners. Most systems use a cycle called vapor-compression. Evaporative coolers use much less power to work. They work best in dry places. In these dry lands, they also add moisture to the air. This can help keep skin and sinuses from getting too dry.

RANCHHOUSE2.JPG
RANCHHOUSE2.JPG

People have used this idea for thousands of years. In ancient Egypt, people used clay jars to cool water.

Tools 4 Water 002.JPG
Tools 4 Water 002.JPG
In ancient Persia, they used wind shafts on roofs. These are called windcatchers. They caught the wind to cool buildings. Today, many machines use a fan to pull air through wet pads. This helps the water turn into vapor more quickly. This cooling method is a very old and smart way to stay comfortable.

173 words

An evaporative cooler is a device used to cool the air.

Evaporative cooler annotated.svg
Evaporative cooler annotated.svg
It is also known by names like a swamp cooler or a desert cooler. This machine works differently than most air conditioners. Most modern systems use a process called vapor-compression to create cold air. An evaporative cooler uses the natural way water turns into vapor. This method uses much less energy than a standard refrigerator system. It is a very smart way to stay cool in dry places.
MistingFan.jpg
MistingFan.jpg

To understand how it works, we must look at how water changes. When liquid water turns into water vapor, it is called evaporation. For this to happen, the water must absorb heat from the surrounding air. This takes heat away from the air and turns it into latent heat. As the heat leaves the air, the air temperature drops significantly.

The process of indirect evaporative cooling.png
The process of indirect evaporative cooling.png
In a typical machine, a pump moves water over special pads. Then, a fan pulls warm air through these wet pads. The air loses its heat to the water and enters the building feeling much cooler.
Direct evaporative cooling.png
Direct evaporative cooling.png

People have used this clever idea for thousands of years. In ancient Egypt, people used porous clay jars to keep water cool.

Tools 4 Water 002.JPG
Tools 4 Water 002.JPG
They even used fans to blow air over these jars to help. In ancient Persia, people built windcatchers on their roofs. These were wind shafts that caught breezes and passed them over underground water. This cooled the air before it entered the house.
Qanat wind tower.svg
Qanat wind tower.svg
These ancient methods were ways to cool buildings without using any electricity at all.

Many important discoveries helped improve these cooling tools over time. In 1906, many US patents suggested using wood wool pads to help evaporation. A 1945 patent showed a design with a water reservoir and a pump. In 1974, William H. Goettl invented a special combination cooling system. Later, in 1986, researchers at the University of Arizona built a cooling tower. They used data from Tucson, Arizona, to create new design guidelines.

RANCHHOUSE2.JPG
RANCHHOUSE2.JPG
These facts helped make the machines we use today much more efficient.

You can see this cooling process happening in your own life. A great example is when you sweat on a hot day. Your body secretes sweat to help you stay cool through evaporation. This works just like the machines used in large buildings.

Air cooler.jpg
Air cooler.jpg
Evaporative coolers are very popular in dry, sunny places. You can find them in cities like Albuquerque, Denver, and Fresno. They are also used in parts of Australia. In these dry lands, the machines help keep the air from feeling too dry.
Psychometric chart example of Salt Lake City.png
Psychometric chart example of Salt Lake City.png

452 words

An evaporative cooler is a device that cools air through the evaporation of water.

Evaporative cooler annotated.svg
Evaporative cooler annotated.svg
It is also known by many names, including a swamp cooler, desert cooler, or wet air cooler. Unlike standard air conditioning systems, which rely on vapor-compression or absorption refrigeration cycles, evaporative cooling uses a different physical principle. This method is often much more energy-efficient than traditional refrigeration. In very dry climates, these devices also add moisture to the air. This can make the indoor environment more comfortable for people living in arid regions.
Direct evaporative cooling.png
Direct evaporative cooling.png

The mechanism relies on a process called an isenthalpic process. This means the process occurs at a constant enthalpy value. When liquid water turns into water vapor, it must absorb energy to change its state. This energy is known as the latent heat of vaporization. In this process, the water absorbs sensible heat from the surrounding air. The sensible heat is the energy that affects the actual temperature of the air. As the air loses this heat to the water, the air temperature drops. This heat is converted into latent heat, which is the energy stored in the water vapor.

The process of indirect evaporative cooling.png
The process of indirect evaporative cooling.png

There are different ways to apply this cooling technology. Direct evaporative cooling introduces the evaporated water into the indoor space. This increases the humidity of the room. This is often helpful in desert climates where the air is very dry. Indirect evaporative cooling is another method used to cool air. This technique allows for cooling without increasing the indoor humidity levels. There are also passive evaporative cooling strategies. These methods provide cooling benefits without the need for complex mechanical equipment or ductwork.

The process of indirect evaporative cooling.png
The process of indirect evaporative cooling.png

Humans have used evaporative cooling for thousands of years. In ancient Egypt, people used porous earthenware vessels to cool water.

Tools 4 Water 002.JPG
Tools 4 Water 002.JPG
Some historical frescoes from 2500 BCE show people fanning these jars to cool rooms. In ancient Persia, people used windcatchers to cool their buildings.
Qanat wind tower.svg
Qanat wind tower.svg
These were wind shafts built on roofs to catch breezes. The wind was passed over subterranean water in a qanat to cool the air. In the 20th century, the United States saw many patents for these devices. Starting in 1906, many patents suggested using excelsior, or wood wool, as pads. A 1945 patent described a design with a water reservoir, a pump, and a centrifugal fan.
Air cooler.jpg
Air cooler.jpg

Modern advancements have refined how these systems work. In 1974, William H. Goettl invented the "High Efficiency Astro Air Piggyback System." This was a combination unit using both refrigeration and evaporative cooling. In 1986, researchers at the University of Arizona built a passive evaporative cooling tower. The data they collected in Tucson, Arizona, helped create design guidelines for cooling towers. Today, these systems are used in many places. They are common in the American Southwest and the southern parts of Australia. In arid climates, they can reduce operating costs by about 80% compared to compressor-based cooling.

RANCHHOUSE2.JPG
RANCHHOUSE2.JPG

The effectiveness of the cooler depends on the climate. Scientists look at the wet-bulb depression to measure this. This is the difference between the dry-bulb temperature and the wet-bulb temperature. In very humid climates, evaporative cooling is less effective. For example, the monsoon season in New Mexico and Arizona can limit its use. However, the technology is still useful in many industries. It is used in greenhouses, laundries, and commercial kitchens. It is also used in confinement farming for poultry, hogs, and dairy.

Psychometric chart example of Salt Lake City.png
Psychometric chart example of Salt Lake City.png

Evaporative cooling is a natural process we see in many forms. A common example is human perspiration, or sweating. When the body secretes sweat, the evaporation of that liquid cools the body. This is similar to how a machine cools a room. Another related process is sublimation cooling. This is a phase transition from a solid directly to a vapor. This has been observed on the planetoid Pluto. There is also a "self-refrigerating" beverage can. This uses a desiccant and a liquid to absorb the latent heat of fusion. This is a different type of phase-change cooling that achieves a similar goal.

MistingFan.jpg
MistingFan.jpg

696 words
🖼️ Images & Media (11)
File:Tools 4 Water 002.JPG
Tools 4 Water 002.JPG
File:Air cooler.jpg
Air cooler.jpg
File:Qanat wind tower.svg
Qanat wind tower.svg
File:RANCHHOUSE2.JPG
RANCHHOUSE2.JPG
File:Psychometric chart example of Salt Lake City.png
Psychometric chart example of Salt Lake City.png
File:Evaporative cooler annotated.svg
Evaporative cooler annotated.svg
File:Direct evaporative cooling.png
Direct evaporative cooling.png
File:The process of indirect evaporative cooling.png
The process of indirect evaporative cooling.png
File:Песочин ТЭЦ5 Градирни VizuIMG 2181.JPG
Песочин ТЭЦ5 Градирни VizuIMG 2181.JPG
File:Mist spraying-smple type1.jpg
Mist spraying-smple type1.jpg
File:MistingFan.jpg
MistingFan.jpg
Up Next
💻
Windcatcher
Technology
More to explore

🔬 Go deeper

More advanced topics to explore

🪜 Step back

Simpler topics to build understanding

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.