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Sediments off Brazil’s Northeast coast reveal sudden changes in heat transport in the Atlantic

Researchers have found evidence of two episodes of significant Atlantic Meridional Overturning Circulation (AMOC) intensification between 17,800 and 14,800 years ago. The study suggests that the AMOC may be more dynamic than previously thought, with potential consequences for global climate patterns.

Ocean eddies are amplifying climate extremes in coastal seas, study finds

Intensifying ocean eddies are amplifying climate extremes in key coastal ecosystems by redistributing heat and nutrients. This process enhances productivity in some areas while trapping heat closer to the surface, leading to rapid warming and altered regional weather patterns.

SourceUniversity of Miami Rosenstiel School of Marine, Atmospheric, and Earth Science·JournalNature Climate Change·TypeObservational study·DateApr 15, 2026

Unexpected feedback in the climate system

Researchers found a surprising correlation between West Antarctic Ice Sheet retreat and marine algae growth over the past 500,000 years. The study suggests that global warming may lead to reduced CO2 uptake if the ice sheet continues to shrink.

SourceUniversity of Oldenburg·JournalNature Geoscience·TypeObservational study·DateFeb 2, 2026

Determining an efficient method for measuring coastal currents

Researchers compared three methods to measure surface currents over large areas, identifying an ideal drone-based technique that uses short aerial videos and mathematical analysis of wave patterns to determine current speed and path. This approach offers several advantages, including reduced costs and ease of deployment.

SourceTexas A&M University·JournalJournal of Atmospheric and Oceanic Technology·DateJan 26, 2026

More polar ocean turbulence due to planetary warming

New research suggests that ocean turbulence and horizontal stirring will dramatically increase in the Arctic and Southern Oceans due to human-induced Global Warming. The study uses ultra-high-resolution simulations to investigate how mesoscale horizontal stirring (MHS) responds to warming, revealing a pronounced future intensification ...

SourceInstitute for Basic Science·JournalNature Climate Change·TypeComputational simulation/modeling·DateNov 5, 2025

Ocean anomalies traveling North crucial for the Atlantic Meridional Overturning Circulation

Researchers found that ocean anomalies traveling northward affect the Atlantic Meridional Overturning Circulation in the Nordic Seas, controlling its strength. The study suggests that these anomalies can be monitored using satellite data, providing a cost-effective way to track climate changes.

SourceStockholm University·JournalCommunications Earth & Environment·TypeObservational study·DateAug 11, 2025

Hard-to-avoid emissions: Limited potential for marine carbon dioxide removal in Germany’s seas

A new study finds that ocean-based carbon dioxide removal (CDR) and storage in German waters is feasible but with limitations, such as local marine conditions and required materials, energy, and infrastructure. Only five methods were shortlisted for implementation in German North Sea and Baltic waters.

SourceHelmholtz Centre for Ocean Research Kiel (GEOMAR)·JournalEarth's Future·TypeMeta-analysis·DateApr 29, 2025

Revealing long-term changes in the marine environment and ecosystems of the Southern Ocean

A multidisciplinary survey in the eastern Indian sector of the Southern Ocean found that the southern boundary of the Antarctic Circumpolar Current has shifted southward, causing a change in water temperature and mac zooplankton composition. The survey also estimated the biomass of Antarctic krill in the area, with comparable results t...

SourceHokkaido University·JournalProgress In Oceanography·TypeObservational study·DateApr 7, 2025

Thinner Arctic sea ice may affect the AMOC

Researchers warn that thinner Arctic sea ice may lead to a tipping point in the AMOC, weakening global ocean circulation and impacting climate in Scandinavia. The Beaufort Gyre, an important feature of the Arctic Ocean, is currently losing large amounts of sea ice due to warmer temperatures.

SourceUniversity of Gothenburg·JournalJournal of Geophysical Research Oceans·TypeComputational simulation/modeling·DateMar 31, 2025

Top locations for ocean energy production worldwide revealed

A comprehensive global assessment of ocean current energy identifies high power density areas off the East coast of the U.S. and Eastern coast of Africa, suitable for generating electricity from ocean currents. The study highlights the importance of expanding data collection to refine understanding and unlock the full energy potential ...

SourceFlorida Atlantic University·JournalRenewable Energy·TypeComputational simulation/modeling·DateMar 17, 2025

Longest-runout undersea sediment flows analysed in unprecedented detail

A team of scientists has developed a new method to monitor undersea sediment flows, allowing them to track the longest-runout sediment flows ever recorded. The study reveals that turbulent mixing with seawater influences the behavior of these powerful canyon-flushing turbidity currents over long distances.

SourceHelmholtz Centre for Ocean Research Kiel (GEOMAR)·JournalNature Communications·TypeObservational study·DateFeb 25, 2025

Mega-iceberg from Antarctica on collision course with South Georgia: Harbinger of things to come?

Researchers from Utrecht University studied icebergs' routes during rapid ice cap deterioration and found evidence of ancient material from Antarctica near South Orkney Island. The study suggests that Antarctica had an ice cap in the late Eocene, and large icebergs could survive in warm ocean conditions.

SourceUtrecht University·JournalClimate of the Past·TypeComputational simulation/modeling·DateFeb 24, 2025

Eddy-mean flow energy exchange depends on three variables

Researchers found that the eddy-mean kinetic energy exchange term is separated into three parts: one associated with cross-stream variation, one with along-stream variation, and one with mean flow direction. This new framework describes eddy-mean energy exchange without accounting for forces or physical properties.

SourceOcean-Land-Atmosphere Research (OLAR)·JournalOcean-Land-Atmosphere Research·TypeData/statistical analysis·DateFeb 19, 2025

How does the atmosphere affect ocean weather?

A new study by scientists at the University of Rochester suggests that atmospheric wind has a surprising impact on ocean eddies, which are circular currents of water about 100 kilometers wide. The research reveals that wind can both energize and dampen eddies, depending on their spin direction.

SourceUniversity of Rochester·JournalNature Communications·DateJan 31, 2025

Q&A: How rate of CO2 rise can affect a global ocean current

A recent University of Washington study found that a slower increase in atmospheric carbon dioxide levels has less impact on the Atlantic Ocean's circulation. The research, published in PNAS, suggests that this slowdown allows the ocean system more time to adapt to rising CO2 levels and mitigates its effects.

SourceUniversity of Washington·JournalProceedings of the National Academy of Sciences·TypeComputational simulation/modeling·DateJan 28, 2025

The Arctic is the only ocean that has not seen a drop in legacy persistent organic pollutants decades after global regulations, says new Concordia study

A new study published in Science Advances found that the Arctic Ocean has seen a sharp rise in legacy persistent organic pollutants (POPs) decades after global regulations were put in place. POPs, which are toxic and bioaccumulative, pose potential dangers to animals and people in the fragile ecosystem's food web.

SourceConcordia University·JournalScience Advances·TypeData/statistical analysis·DateNov 5, 2024

Remote control eddies: Upwelled nutrients boost productivity around Hawaiian Islands

A new study reveals that ocean eddies off the leeward side of Hawaiian Islands supply nutrients to both sides of the island chain, stimulating blooms of phytoplankton and boosting biological productivity. This mechanism may also impact fisheries near Hawaii and other nutrient-poor regions.

SourceUniversity of Hawaii at Manoa·JournalJournal of Geophysical Research Oceans·TypeComputational simulation/modeling·DateOct 31, 2024

Study reveals acceleration in Pacific upper-ocean circulation over past 30 years, impacting global weather patterns

A new study reveals significant acceleration in the upper-ocean circulation of the equatorial Pacific, driven by intensified atmospheric winds. The research provides a spatial view of long-term trends from observations, with potential impacts on regional and global climate patterns.

SourceUniversity of Miami Rosenstiel School of Marine, Atmospheric, and Earth Science·JournalJournal of Geophysical Research Oceans·TypeData/statistical analysis·DateOct 31, 2024

New ice core data provides insight into climate ‘tipping points’ during the last Ice Age

Research from multiple ice cores in Greenland provides new understanding of Dansgaard-Oeschger events, which represent 'tipping points' in Earth's climate. The findings suggest interactions between the Atlantic Meridional Overturning Circulation and wintertime sea ice play a key role in these events.

SourceOregon State University·JournalProceedings of the National Academy of Sciences·TypeData/statistical analysis·DateOct 21, 2024

One of world’s fastest ocean currents is remarkably stable, study finds

A recent study has found that the Florida Current, a key component of the Atlantic Meridional Overturning Circulation (AMOC), has remained remarkably stable over the past four decades. The researchers used measurements from a decommissioned submarine cable and hydrographic surveys to correct for changes in the geomagnetic field.

SourceUniversity of Miami Rosenstiel School of Marine, Atmospheric, and Earth Science·JournalNature Communications·TypeObservational study·DateSep 11, 2024

Not the day after tomorrow: Why we can't predict the timing of climate tipping points

A new study shows that predicting exact tipping times for critical Earth system components is challenging due to large uncertainties. The authors identified three primary sources of uncertainty and found that predicted tipping times for the Atlantic Meridional Overturning Circulation (AMOC) ranged from 2050 to 8065.

SourceTechnical University of Munich (TUM)·JournalScience Advances·TypeData/statistical analysis·DateAug 2, 2024

A whole new view on glacier melting in Antarctica

Researchers deployed an unmanned submarine 'Ran' under thick ice in Antarctica, revealing high-resolution maps of the glacier's underside. The findings indicate that stronger underwater currents and flowing water influence the melting process, with complex patterns and formations resembling sand dunes.

SourceUniversity of Gothenburg·JournalScience Advances·TypeSurvey·DateJul 31, 2024