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Atmosphere of Venus

space Maturity 5-7

Venus has a thick layer of air.

Atmosphere composition.gif
Atmosphere composition.gif
This air is very hot. It is also very heavy. It feels like being deep under water. The clouds cover the whole planet. It is a wild place! Do you want to visit?

47 words

Venus has a very thick layer of air.

Atmosphere composition.gif
Atmosphere composition.gif
This air is mostly made of one kind of gas. It is much hotter than Earth. The heat stays trapped near the ground. The air is so heavy it feels like being deep under water. Thick clouds cover the whole planet. These clouds hide the ground from view. High up in the sky, the air feels like Earth. It is a very strange place!

79 words

Venus is covered by a very thick layer of gas.

Atmosphere of venus.png
Atmosphere of venus.png
Most of this air is carbon dioxide. It also has some nitrogen. This thick air traps heat from the sun. This is called a greenhouse effect. It makes the surface very hot. The temperature is about 467 °C.
USSR Venera 9 1975 Venus ground colorized by Don P. Mitchell.png
USSR Venera 9 1975 Venus ground colorized by Don P. Mitchell.png
The air is also very heavy. The pressure at the surface is 92 times higher than on Earth. This feels like being deep under water.

Thick clouds of sulfuric acid cover the planet. These clouds hide the ground from view. High in the sky, the air is more like Earth. At 50 km up, the pressure and heat are similar to our home.

Atmosphere composition.gif
Atmosphere composition.gif
Some people think we could live there. We could use floating ships to stay in that layer. The winds high up move very fast. They circle the planet in just four Earth days. This is called super-rotation. Near the poles, the clouds form S-shaped patterns. We call these polar vortices.

177 words

Venus is wrapped in a very thick layer of gas.

Atmosphere of venus.png
Atmosphere of venus.png
This atmosphere is mostly carbon dioxide, which makes up 96.5% of it. The rest is mostly nitrogen at 3.5%. This thick air creates a strong greenhouse effect. It traps heat from the sun very well. Because of this, the surface is incredibly hot. It stays at about 467 °C (872 °F). This is hotter than any other rocky planet in our solar system.
USSR Venera 9 1975 Venus ground colorized by Don P. Mitchell.png
USSR Venera 9 1975 Venus ground colorized by Don P. Mitchell.png

The air on Venus is also extremely heavy. The pressure at the surface is 92 times higher than on Earth. This feels like being deep under the ocean on our planet. At the surface, the carbon dioxide is so squeezed that it becomes a supercritical fluid. This means it acts like a mix between a gas and a liquid. It forms a kind of sea that covers the whole planet. This sea helps keep the temperature steady between day and night.

Venusian magnetosphere.svg
Venusian magnetosphere.svg

Scientists have studied this thick sky for a long time. Christiaan Huygens first thought Venus might have an atmosphere. Later, Mikhail Lomonosov provided real evidence in 1761. He saw this while watching Venus pass in front of the sun. Today, we use special tools to see through the clouds. Since thick sulfuric acid clouds hide the ground, we used radar to map the surface. Recently, the Parker Solar Probe used infrared light to see the ground too.

The atmosphere has many different layers. The lowest part is the troposphere, which holds 99% of the atmosphere's mass. Above it is the mesosphere, and then the thermosphere. High in the sky, the winds move very fast. This is called super-rotation. These winds circle the entire planet in only four Earth days. This is much faster than the planet itself rotates. Near the poles, the clouds form S-shaped patterns called polar vortices.

Some parts of Venus are surprisingly like Earth. If you fly about 50 to 65 km above the surface, things change. The temperature and pressure there are almost the same as on Earth.

Atmosphere composition.gif
Atmosphere composition.gif
In this layer, the air is cool enough for liquid water. Some people think we could even build floating colonies there. Since our air is lighter than the Venusian air, ships could float like giant balloons. This makes the upper atmosphere the most Earth-like place in the solar system.

422 words

The atmosphere of Venus is a massive, dense layer of gases that surrounds the planet. It is fundamentally different from Earth's atmosphere in its composition and its extreme physical properties. The air is composed of 96.5% carbon dioxide and 3.5% nitrogen. Other chemical compounds, such as sulfur dioxide, are present only in trace amounts.

Atmosphere of venus.png
Atmosphere of venus.png
This composition creates a powerful greenhouse effect. The carbon dioxide and water vapor trap solar energy, driving surface temperatures to approximately 740 K (467 °C or 872 °F). This makes Venus the hottest terrestrial planet in our solar system, even though it is farther from the Sun than Mercury.

At the surface, the atmosphere behaves in a way that is quite unusual. The atmospheric pressure is about 92 times higher than the pressure on Earth. This is similar to the weight of the water found deep under Earth's oceans. Because the pressure is so high, the carbon dioxide at the surface is no longer a simple gas. It becomes a supercritical fluid.

USSR Venera 9 1975 Venus ground colorized by Don P. Mitchell.png
USSR Venera 9 1975 Venus ground colorized by Don P. Mitchell.png
A supercritical fluid is a state of matter that has properties of both a gas and a liquid. On Venus, this forms a dense sea of supercritical carbon dioxide. This sea covers the entire planet and transfers heat very efficiently. It helps buffer temperature changes between the long day and night cycles.

The atmosphere is organized into several distinct layers based on altitude. The lowest and densest layer is the troposphere, which contains 99% of the atmosphere's total mass. Within this layer, the winds exhibit a phenomenon called super-rotation. While the planet itself rotates very slowly, the atmosphere circles the planet in just four Earth days.

Venus circulation.jpg
Venus circulation.jpg
These winds can reach speeds of 100 m/s (360 km/h or 220 mph) or even higher. This is 60 times faster than the planet's rotation. However, as you move closer to the surface, the wind speed drops significantly to less than 2.8 m/s. Above the troposphere lies the mesosphere, which acts as a middle layer. The highest layer discussed is the thermosphere, where gases are heated and partially ionized by sunlight.

Near the poles of Venus, the atmosphere shows unique structures. These are called polar vortices. Each vortex is a double-eyed system that displays a characteristic S-shaped pattern of clouds. These patterns are visible through advanced imaging. Because thick, opaque clouds of sulfuric acid cover the entire planet, seeing the surface is difficult. For a long time, scientists had to use radar imaging to understand the topography. Recently, the Parker Solar Probe used infrared and visible light frequencies to confirm these surface features.

Human understanding of the Venusian atmosphere has evolved over centuries. Christiaan Huygens was the first to suggest that Venus might have an atmosphere. Later, Mikhail Lomonosov provided the first decisive evidence in 1761. He made his observations while watching the transit of Venus from a small observatory in Saint Petersburg, Russia. Since then, many probes have studied the planet's chemistry. There was significant scientific discussion in 2020 regarding the detection of phosphine, a potential biomarker. While initial reports suggested its presence, later re-analysis of data provided much lower limits for its concentration. However, in September 2024, preliminary analysis of JCMT-Venus data suggested the existence of phosphine at an altitude of 55 km.

Venus also has a unique magnetic environment. Unlike Earth, Venus does not have its own internal magnetic field. Instead, it has an induced magnetosphere. This is created because the ionosphere—a layer of ionized gas—separates the atmosphere from the solar wind.

Venusian magnetosphere.svg
Venusian magnetosphere.svg
This layer excludes the solar magnetic field. Lighter gases, such as water vapor, are continuously stripped away from the planet by the solar wind through the induced magnetotail. Some scientists believe that up to 4 billion years ago, Venus may have had an atmosphere more like Earth's, including liquid water on the surface.

Despite the harsh surface, there is one area that is surprisingly Earth-like. At altitudes between 50 km and 65 km, the temperature and pressure are very similar to Earth's.

Atmosphere composition.gif
Atmosphere composition.gif
In this specific range, the temperature stays within the liquid water range of 273 K to 323 K. Because breathable air (composed of nitrogen and oxygen) would act as a lifting gas on Venus, this layer is a candidate for exploration. In this high altitude, a structure filled with Earth-like air could float like a dirigible. This makes the upper atmosphere one of the most interesting places in the solar system for potential future colonization.

773 words
🖼️ Images & Media (17)
File:USSR Venera 9 1975 Venus ground colorized by Don P. Mitchell.png
USSR Venera 9 1975 Venus ground colorized...
File:Atmosphere of venus.png
Atmosphere of venus.png
File:Atmosphere composition.gif
Atmosphere composition.gif
File:Lomonosov's drawings for his opening of Venus atmosphere 1761.jpg
Lomonosov's drawings for his opening of...
11214 2023 956 Fig6 HTML.webp
File:The Evening Star in a New Light (3083434398).jpg
The Evening Star in a New Light (3083434398).jpg
File:Venus circulation.jpg
Venus circulation.jpg
File:Venus clouds Galileo Color PIA00124.jpg
Venus clouds Galileo Color PIA00124.jpg
File:Arc-1978-ac78-9464 copy.jpg
Arc-1978-ac78-9464 copy.jpg
File:Venusian magnetosphere.svg
Venusian magnetosphere.svg
File:Venus night side IR (Akatsuki).jpg
Venus night side IR (Akatsuki).jpg
File:PIA00072 Venus Cloud Patterns - colorized and filtered.jpg
PIA00072 Venus Cloud Patterns - colorized...

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