CORDIS Project
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This project focuses on improving the understanding of sea ice growth processes, particularly first-year ice, by developing advanced numerical models. It aims to study fluid dynamics within ice and the formation of granular ice in turbulent waters, contributing to climate prediction and biogeochemistry models.
Sea ice provides a dramatic indicator of climate change, and is central to significant feedbacks on climate processes, weather, and polar biogeochemistry.
The recently observed imbalance in the annual cycle of winter ice growth and summer melt results in a declining sea ice cover, with first year ice forming a larger fraction of the ice cover instead of the thicker multiyear ice that has been prevalent in the past.
Hence, first year ice processes become increasingly important.This project will a…
THE CHANCELLOR, MASTERS AND SCHOLARS OF THE UNIVERSITY OF OXFORD
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