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The broad areas of Grae Worster's research encompass buoyancy-driven fluid flows, solidification and interactions between the two. He is particularly interested in the evolution of reactive porous media called mushy layers that commonly form during solidification of multi-component melts. Examples include the partially solidified regions formed during alloy production, solidification of magmas and the freezing of sea water to produce sea ice. Latterly, his research has been particularly focused on ice in our natural environment: sea ice, permafrost and glacial ice sheets.
The broad areas of Grae Worster's research encompass buoyancy-driven fluid flows, solidification and interactions between the two. He is particularly interested in the evolution of reactive porous media called mushy layers that commonly form during solidification of multi-component melts. Examples include the partially solidified regions formed during alloy production, solidification of magmas and the freezing of sea water to produce sea ice. Latterly, his research has been particularly focused on ice in our natural environment: sea ice, permafrost and glacial ice sheets.
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JOURNAL OF FLUID MECHANICS (2023)
JOURNAL OF FLUID MECHANICS (2023)
JOURNAL OF FLUID MECHANICS (2023)
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