A surprising technique has helped scientists observe how Earth’s oceans are changing, and it’s not using specialized robots or artificial intelligence. It’s tagging seals.
Several species of seals live around and on Antarctica and regularly dive more than 100 meters in search of their next meal. These seals are experts at swimming through the vigorous ocean currents that make up the Southern Ocean. Their tolerance for deep waters and ability to navigate rough currents make these adventurous creatures the perfect research assistants to help study the Southern Ocean.
Seal sensors
Researchers have been attaching tags to the foreheads of seals for the past two decades to collect data in remote and inaccessible regions. A researcher tags the seal during mating season, when the marine mammal comes to shore to rest, and the tag remains attached to the seal for a year.
A researcher glues the tag to the seal’s head – tagging seals . The tag detaches after the seal molts and sheds its fur for a new coat each year.
The tag collects data while the seal dives and transmits its location and the scientific data back to researchers via satellite when the seal surfaces for air.
First proposed , seal tagging has grown into an with rigorous sensor accuracy standards and broad data sharing. Advances in satellite technology now allow scientists to have near-instant access to the data collected by a seal.
New scientific discoveries aided by seals
The tags attached to seals typically carry pressure, temperature and salinity sensors, all properties used to assess the . The sensors also often contain chlorophyll fluorometers, which can provide data about the water’s phytoplankton concentration.
that form the base of the oceanic food web. Their presence often means that animals such as fish and seals are around.
The seal sensors can also tell researchers about the effects of climate change around Antarctica. Approximately 150 billion tons of ice , contributing to global sea-level rise. This melting is driven by warm water carried to the ice shelves .
With the data collected by seals, oceanographers this warm water travels to reach ice shelves and how currents transport the resulting melted ice away from glaciers.
Seals regularly dive under sea ice and near glacier ice shelves. These regions are challenging, and can even be dangerous, to sample with traditional oceanographic methods.
Across the open Southern Ocean, away from the Antarctic coast, seal data has also shed light on another pathway causing ocean warming. Excess heat from the atmosphere moves from the ocean surface, which is in contact with the atmosphere, down to the interior ocean in . In these areas, heat moves into the deep ocean, where it can’t be dissipated out through the atmosphere.
The ocean stores from human activity. So, understanding how this heat moves around helps researchers monitor oceans around the globe.
Seal behavior shaped by ocean physics
The seal data also provides marine biologists with information about the seals themselves. Scientists can determine where seals look for food. Some regions, for .
In fronts, the ocean’s circulation creates turbulence and mixes water in a way that brings , where phytoplankton can use them. As a result, fronts can have phytoplankton blooms, which attract fish and seals.
Scientists use the tag data to see how seals are adapting to a changing climate and warming ocean. In the short term, seals may benefit from more ice melt around the Antarctic continent, as they tend to find more food in coastal areas with . , however, may change where their prey is and ultimately threaten seals’ ability to thrive.
Seals have helped scientists understand and observe some of the most remote regions on Earth. On a changing planet, seal tag data will continue to provide observations of their ocean environment, which has vital implications for the rest of Earth’s climate system.