OceanNexus Press Release

What happens when the ocean tips? New EU project to investigate the consequences for nature and people

A major change in an ocean current could have consequences far beyond temperatures in Northern Europe.

We typically experience climate change through higher temperatures, more extreme weather and rainfall that comes in greater amounts, or not at all. But the consequences of global warming go much deeper than that.

Beneath the ocean surface, major changes are already taking place. Ocean warming affects currents, marine animals and plants, and the complex ecosystems that depend on one another. This increases the risk of marine systems approaching critical thresholds. So-called tipping points.

“We are already seeing tropical coral reefs dying, while marine heatwaves are causing fish and marine mammals to migrate and move into other ecosystems. And if major ocean currents change significantly, the consequences could be even greater,” says Professor Peter Ditlevsen of the Niels Bohr Institute at the University of Copenhagen.

Peter Ditlevsen leads the new interdisciplinary EU project OceanNexus, which will investigate the consequences of changes in ocean systems and identify early warning signs of tipping points, so that there may be time to respond.

The project comes just a few years after Ditlevsen and his colleague sparked widespread international debate with their 2023 research into the risk of a collapse of the Atlantic Meridional Overturning Circulation (AMOC).

One of the challenges in researching ocean tipping points is the limited amount of long-term data available. But waiting for more data may not be an option, Peter Ditlevsen says.

“We are constantly collecting more and better data. But we can only collect one year of data per year, so data collection may simply be too slow if we are to have time to respond to the risk of tipping,” says Peter Ditlevsen.

When changes in the ocean reach land

If major ocean currents change dramatically, it is not only a question of temperatures and marine biology. The consequences could extend to fisheries, economies and coastal communities that live by and depend on the ocean. Understanding these connections is at the heart of OceanNexus.

Over the next four years, Peter Ditlevsen and colleagues across Europe will investigate early warning signs of tipping points and explore the potential consequences that major changes in ocean systems could have for nature, society and people.

Among other things, the researchers will develop so-called integrated assessment models to describe the connections between the different parts of the system.

The aim is therefore not only to understand whether ocean systems can tip, but also what happens if they do, and what the consequences could be for people.

From knowledge to action

The ambition is to improve our ability to identify early warning signs of tipping points while gaining a better understanding of the consequences that major changes in ocean systems could have. But for OceanNexus, the work does not stop when new scientific results are produced.

“First and foremost, we want to help reduce the uncertainties in future projections of tipping points. But we also hope that a better fundamental understanding of the climate and biodiversity crises can provide more qualified advice to opinion leaders and decision-makers on climate, environmental and fisheries policy,” says Peter Ditlevsen.

OceanNexus places particular emphasis on translating new scientific knowledge into decisions and action. An entire work package dedicated to policy, governance and management will bring researchers together with relevant authorities and stakeholders to identify knowledge needs, develop concrete policy recommendations and create tools that can support decisions about the future of the ocean.

The aim is to bridge the gap between research and those who need to use it. From European policymakers to regional stakeholders and those responsible for managing marine areas.

Five European marine regions will help reveal what happens when the ocean changes

OceanNexus will focus on five marine regions around Europe, each with very different characteristics and challenges.

  • The Baltic Sea is affected by, among other things, pollution and overfishing, which have put pressure on fish stocks.
  • The North Atlantic is home to the AMOC, and changes in the circulation could have major consequences for marine ecosystems and surrounding communities.
  • The Bay of Biscay is an important fishing region for both France and Spain and could be affected by changes in ocean circulation.
  • The Ebro Delta is vulnerable to changes in ocean conditions, with potential consequences for fisheries and tourism.
  • The northwestern Mediterranean, where sea temperatures have already risen significantly as a result of climate change.

Together, the five regions will allow researchers to investigate how different physical, biological and societal systems are interconnected, and whether there are common signals indicating that a system is approaching a critical threshold.

About OceanNexus

OceanNexus is a four-year European research project investigating how climate-driven tipping points and extreme events in the ocean can propagate through the interconnected systems of the ocean, marine ecosystems and society.

The project combines climate models, ecosystem models and societal models to investigate changes over the short, medium and long term. Researchers will, among other things, investigate potential changes in the AMOC, a weakening of the North Atlantic Subpolar Gyre, and persistent marine heatwaves.

OceanNexus will develop methods to identify early warning signals of critical changes in the ocean and investigate how consequences can propagate from the physical ocean to marine ecosystems and onwards to social and economic systems.

faellesfoto

Project period: 1 September 2026 – 31 August 2030

EU funding: €6.53 million

Coordinator: University of Copenhagen

Funding: EU Horizon Europe

Project leader: Professor Peter Ditlevsen
                Niels Bohr Institute
                University of Copenhagen

Website: www.oceannexus.eu

Contact

Peter Ditlevsen

Professor
Niels Bohr Institute
University of Copenhagen

Mobile: +45 28 75 06 03

Email: pditlev@nbi.ku.dk
Nina Bendixen

Communications and Press
Niels Bohr Institute
University of Copenhagen

Mobile: +45 27 26 80 87

Email: n.bendixen@nbi.ku.dk