Completed Climate, Earth & Environment Clean Energy

Ocean Regulation of Climate by Heat and Carbon Sequestration and Transports (ORCHESTRA)

In plain English

AI plain-English summary

Over 90% of the extra heat trapped by greenhouse gases has been absorbed by the ocean, and the Southern Ocean alone accounts for roughly three-quarters of that uptake. Yet this remote, stormy region around Antarctica is the least-measured and least-understood ocean on Earth. Climate models used to predict future warming currently represent the Southern Ocean poorly, making their projections unreliable. ORCHESTRA will send research ships, unmanned vehicles, and aircraft into the Southern Ocean to measure how heat and carbon move between the atmosphere, surface waters, and deep ocean layers. The team will use this data to fix the flawed models. If successful, the research will produce more accurate climate projections, allowing governments and industries to plan for sea-level rise, shifting weather patterns, and changes to ocean currents that affect fisheries and shipping routes. The Southern Ocean’s ability to absorb carbon has an estimated economic value in the trillions of dollars, but how that capacity will change remains highly uncertain. Narrowing that uncertainty is a practical economic priority as well as a scientific one.

View original technical description
Climate change is one of the most urgent issues facing humanity and life on Earth. Better predictions of future climate change are needed, so that measures to reduce its impact and cope with its effects can be put in place. However, improving these predictions requires better knowledge of how the global climate system functions, and this knowledge is currently incomplete. A critical gap concerns understanding of the uptake of heat and carbon by the oceans. Over 90% of the extra heat now present in the Earth System because of global warming has entered the ocean, with strong increases in both the upper and deep ocean apparent since the 1970s. Further, the global ocean is the largest reservoir of carbon in the climate system, and has absorbed nearly one-third of the extra carbon emissions produced since the industrial revolution. Climate change in the atmosphere is strongly moderated by these processes, and would be dramatically greater without them. The Southern Ocean - the vast ocean that encircles Antarctica - is critically important in this regard. Because of the nature of its circulation, its physical and chemical properties, and its connections with the rest of the globe, it accounts for around half of the oceanic uptake of carbon, and around three-quarters of the heat uptake. However, because of its remoteness and hostile environment, with stormy seas, heavy sea ice in places, and long periods of darkness in winter, the Southern Ocean is also the least-measured and least-understood ocean in the world. One consequence of this lack of understanding is that the representations of the Southern Ocean in many of the models used to create future climate projections are not fit for purpose. Our project, Ocean Regulation of Climate by Heat and Carbon Sequestration and Transports (ORCHESTRA), represents a linking together of many of the major environmental research institutes in the UK, who will work with national and international partners to address these issues. We propose a combination of data collection, novel analyses and computer simulations to radically improve our ability to measure, understand and predict the circulation and role in global climate of the Southern Ocean. Data collection will include major ship-based expeditions across the Atlantic sector of the Southern Ocean to determine the basin-scale transports of heat and carbon in all the different ocean layers (near-surface, intermediate, abyssal). It will include the use of novel technology and unmanned vehicles to collect data over much longer periods and much greater areas than ships alone could allow, and flights with research aircraft to determine climatically-important transfers of heat and carbon between the atmosphere and ocean in all different conditions of sea ice. Informed by the new understanding that these field campaigns will produce, improvements to ocean models will be proposed and tested, and the improvements delivered to climate modellers so that better future projections can be produced. It is clear that these developments are required urgently - the benefits to be gained by improving climate prediction are difficult to overstate, with more effective strategies for dealing with climate change becoming feasible, and better planning assumptions made possible for industry, commerce and other sectors. The value of the Southern Ocean carbon sink was recently estimated to be in the trillions of dollars, but with uncertainty in the billions concerning how it will change in future: narrowing this uncertainty is thus a strong economic priority, as well as a scientific and societal one.

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Researchers

Adam Blaker (Co-Investigator)Alex Megann (Co-Investigator)Alexandra Iris Weiss (Co-Investigator)Andrew Coward (Co-Investigator)Andrew Lorrain Ridout (Co-Investigator)Andrew Meijers (Principal Investigator)Andrew Shepherd (Co-Investigator)Aylmer Nurser (Co-Investigator)Bengamin Moat (Co-Investigator)Brian King (Co-Investigator)Christopher John Banks (Co-Investigator)David Berry (Co-Investigator)David Munday (Co-Investigator)Einar Abrahamsen (Co-Investigator)Ekaterina Popova (Co-Investigator)Elaine McDonagh (Co-Investigator)Elizabeth Kent (Co-Investigator)Emily Shuckburgh (Principal Investigator)Ernest Woodward (Co-Investigator)Hugh Venables (Co-Investigator)James Brearley (Co-Investigator)James Harle (Co-Investigator)Jeff Polton (Co-Investigator)Jeremy Grist (Co-Investigator)Joel Hirschi (Co-Investigator)Lars Boehme (Co-Investigator)Margaret Yelland (Co-Investigator)Maria Luneva (Co-Investigator)Melanie Leng (Co-Investigator)Michael Meredith (Principal Investigator)Mingxi Yang (Co-Investigator)Philip Nightingale (Co-Investigator)Simon Josey (Co-Investigator)Sinhue Torres-Valdes (Co-Investigator)Sudipta Goswami (Co-Investigator)Susan Elizabeth Hartman (Co-Investigator)Thomas Bell (Co-Investigator)Timothy Smyth (Co-Investigator)Vassilis Kitidis (Co-Investigator)Yevgeny Aksenov (Co-Investigator)Yvonne Firing (Co-Investigator)

Related Research

Grants with similar aims, by meaning.

Southern Ocean carbon indices and metrics (SARDINE)
Encore
ENCORE is the National Capability ORchestra Extension (ENCORE)
EXport Pathways Out of the Southern ocean and the Effect on anthropogenic carbon sequestration (Expose)
CO2 and climate change: deciphering the role of the high-latitude oceans

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Research Grant

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