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Sea surface temperature

earth science Maturity 9-11

The ocean has a top layer. This layer is the water near the top. It can be warm or cold. This water helps the air above it. It also helps make storms.

1979- Daily sea surface temperatures 60S-60N latitudes.png
1979- Daily sea surface temperatures 60S-60N latitudes.png
Do you like the beach?

44 words

The ocean has a top layer of water. This layer can be warm or cold.

MODIS and AIRS SST comp fig2.i.jpg
MODIS and AIRS SST comp fig2.i.jpg
The temperature of this water changes during the day. It can also change when the wind blows.

Warm water can help make big storms. These storms can also make the water cool down.

1880- Global average sea surface temperature - global warming.svg
1880- Global average sea surface temperature - global warming.svg

The ocean is getting warmer. It takes in much of the extra heat from our world. This helps the ocean stay warm.

Scientists use tools to check the water. They use ships and floating tools.

1979- Daily sea surface temperatures 60S-60N latitudes.png
1979- Daily sea surface temperatures 60S-60N latitudes.png
These tools help us learn about the sea.

113 words

Sea surface temperature is how warm the top of the ocean is. This is the water close to the surface.

MODIS and AIRS SST comp fig2.i.jpg
MODIS and AIRS SST comp fig2.i.jpg
The temperature changes during the day. It can also change when the wind blows. On calm days, the temperature changes more. On breezy days, it stays more the same.

Warm water can help make big storms called cyclones. These storms can also make the water cool down. They do this by mixing the top water with deep water.

1880- Global average sea surface temperature - global warming.svg
1880- Global average sea surface temperature - global warming.svg

The ocean is getting warmer due to climate change. The ocean absorbs about 90% of the extra heat. This means the water holds a lot of power.

1979- Daily sea surface temperatures 60S-60N latitudes.png
1979- Daily sea surface temperatures 60S-60N latitudes.png

Sometimes, patterns like El Niño change things. El Niño is a way the ocean warms up. In the Pacific, warm water spreads to new areas. This can cause dry weather in some places. It can also cause rain in other places.

1997 El Nino TOPEX.jpg
1997 El Nino TOPEX.jpg
Scientists use many tools to study these changes. They use ships, buoys, and even satellites.

187 words

Sea surface temperature is the warmth of ocean water near the top.

MODIS and AIRS SST comp fig2.i.jpg
MODIS and AIRS SST comp fig2.i.jpg
This temperature is very important for our planet. It can change the air near the shore. These changes help make things like sea breezes or sea fog. The water temperature also affects how big storms grow. Warm water can help a cyclone become much stronger. However, these same storms can leave a cool wake behind them. This happens because the storm mixes the warm top water with cooler water from below.

Many different things make the ocean surface change. The temperature shifts during the day, much like the air does. On calm days, the temperature changes more than on breezy days. Winds near the coast can also move water around. Sometimes, offshore winds push warm water away. This allows cool water from deep down to rise up. This process is called upwelling. Upwelling can bring many nutrients to the area for marine life.

ECCO2 Sea Surface Temperature and Flows.ogv
ECCO2 Sea Surface Temperature and Flows.ogv

Scientists have been measuring the ocean for a long time. Benjamin Franklin was one of the first to study it. In the late eighteenth century, he used a mercury thermometer. He hung it from a ship to study the Gulf Stream. Later, people would dip buckets into the sea to take samples. By 1963, ships began using automated tools to measure water. These tools take water from the ship's intake port. Today, we use many tools like buoys and satellites to see the ocean.

MODIS sst.png
MODIS sst.png

There are many specific facts about how the ocean warms. The global mean sea surface temperature has been rising. It likely increased by 0.88 °C between 1850–1900 and 2011–2020. Most of this warming happened between 1980 and 2020. The ocean is very good at holding heat. In fact, it absorbs about 90% of the extra heat from climate change. This helps the ocean act like a giant heat sponge.

1880- Global average sea surface temperature - global warming.svg
1880- Global average sea surface temperature - global warming.svg

Sometimes, large patterns change the temperature of the whole Pacific Ocean. One famous pattern is called El Niño. This happens when warm water spreads across the ocean. It is defined as a change of at least 0.5 °C. This warming can last for nine months to two years. El Niño can change the weather for many people. It can cause droughts in some places and heavy rain in others.

1997 El Nino TOPEX.jpg
1997 El Nino TOPEX.jpg
These patterns show how connected the ocean and air really are.

415 words

Sea surface temperature, often called SST, is the temperature of ocean water near the top.

MODIS and AIRS SST comp fig2.i.jpg
MODIS and AIRS SST comp fig2.i.jpg
While the term "surface" can vary, it generally refers to the water at or just below the ocean's surface. Scientists use different methods to measure this layer. Some focus on the "skin temperature," which is only about 20 micrometres thick. Others measure the "subsurface bulk temperature," which looks at the top few metres of the ocean. These measurements are vital because the ocean surface interacts constantly with the atmosphere. This interaction influences weather patterns, such as the formation of sea breezes and sea fog.
MODIS sst.png
MODIS sst.png

The depth of the surface layer is not a fixed number. It depends on how much the water mixes with the deeper ocean. In tropical regions, the warm surface layer is about 100 metres deep and stays quite stable. This layer does not mix much with the colder water below. Near the poles, however, winter cooling and storms make the surface water denser. This causes the water to mix to much greater depths before it settles again in the summer. This heated layer is often related to the photic depth, which is the zone where light reaches. In the open ocean, this depth can reach around 200 metres.

ECCO2 Sea Surface Temperature and Flows.ogv
ECCO2 Sea Surface Temperature and Flows.ogv

Many different forces cause the temperature of the surface to change. On a daily scale, SST has a diurnal range, meaning it changes between day and night. This change is similar to the air temperature, but the ocean changes less because of its thermal inertia. Winds also play a massive role in moving water. Offshore winds can cause a process called Ekman transport. This moves warm surface water away from the coast and replaces it with cooler water from below. This process is known as upwelling. Upwelling is important because it brings nutrient-rich water to the surface, which helps marine life grow.

Large-scale weather events can also cause sudden temperature shifts. Tropical cyclones, such as hurricanes, can create a "cool wake" in the ocean. As the storm passes, turbulent mixing pulls cooler water up to the surface. This results in a visible drop in SST. Other factors like Saharan dust outbreaks can also reduce temperatures. For example, dust in the North Atlantic can lower SST by 0.2 °C to 0.4 °C. Even biological activity can matter, as concentrated phytoplankton blooms can cause short-term fluctuations in temperature.

In the Pacific Ocean, massive climate patterns called El Niño and La Niña occur regularly. El Niño is defined by a warming or cooling of at least 0.5 °C in the east-central tropical Pacific. These events usually happen every two to seven years and can last between nine months and two years. During an El Niño, warm water spreads from the western Pacific and the Indian Ocean toward the east. This warm water replaces the cold, nutrient-rich Humboldt Current. This shift can cause heavy rain in normally dry areas and droughts in the western Pacific.

1997 El Nino TOPEX.jpg
1997 El Nino TOPEX.jpg
Weeklysst.gif
Weeklysst.gif

History shows us how our understanding of the ocean has grown. Benjamin Franklin was a pioneer in this field during the late eighteenth century. He used a mercury thermometer suspended from a ship to study the Gulf Stream. Later, scientists used buckets to collect water samples from the surface. By 1963, ships began using automated systems to measure water from engine intake ports. However, these early automated methods had a "warm bias" because of the heat from the engines. Today, we use much more precise tools like fixed weather buoys and satellites to track these changes globally.

Recent data shows that the global mean sea surface temperature is rising due to climate change. It is estimated that global SST increased by 0.88 °C between 1850–1900 and 2011–2020. Most of this warming, about 0.60 °C, happened between 1980 and 2020. The ocean is a massive heat sink, absorbing about 90% of the excess heat generated by global warming. While land temperatures are rising faster, the ocean's warming is a critical part of the Earth's changing climate.

1880- Global average sea surface temperature - global warming.svg
1880- Global average sea surface temperature - global warming.svg
Scientists project that all ocean regions will continue to warm by 2050.

703 words
🖼️ Images & Media (10)
File:1979- Daily sea surface temperatures 60S-60N latitudes.png
1979- Daily sea surface temperatures...
ECCO2 Sea Surface Temperature and Flows.ogv
File:Weeklysst.gif
Weeklysst.gif
File:1997 El Nino TOPEX.jpg
1997 El Nino TOPEX.jpg
File:1880- Global average sea surface temperature - global warming.svg
1880- Global average sea surface...
File:MODIS and AIRS SST comp fig2.i.jpg
MODIS and AIRS SST comp fig2.i.jpg
File:MODIS sst.png
MODIS sst.png
File:Snow Clouds in Korea.jpg
Snow Clouds in Korea.jpg
File:WorldwideTCpeaks.gif
WorldwideTCpeaks.gif
File:Mean sst equatorial pacific.gif
Mean sst equatorial pacific.gif
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