ERC Consolidator Grant · 2023
Physically-Based Ocean Transport
The ocean absorbs 90% of the heat associated with global warming and 30% of anthropogenic CO2. How such tracers are accumulated and redistributed within the turbulent ocean is a central issue of long-term climate prediction. The challenge stems from the existence of ocean mesoscale eddies: turbulent vortices tens of kilometers wide that are not resolved by climate models despite being key contributors to ocean transport. In the absence of a better theory, the associated transport is parameterized in global models using ad hoc coefficients with arbitrary depth dependence. The present project will improve upon this unsatisfactory state of the art. Based on a multi-method approach combining…
From the public funding record at EU CORDIS. Describes the funded project, not the reviews below.
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