Thermodynamic ablation of ice in contact with the ocean is an essential element of ice sheet and ocean interactions but is challenging to model and quantify. Building on earlier observations of sea ice ablation, a variety of recent theoretical, experimental and observational studies have considered ice ablation in contrasting geometries, from vertical to near-horizontal ice faces, and reveal different scaling behaviour for predicted ablation rates in different dynamical regimes. However, uncertainties remain about when the contrasting results should be applied, as existing model parameterisations do not capture all relevant regimes of ice–ocean ablation. To progress towards improved models of ice–ocean interaction, we synthesise current un...
The ocean is an important control on the mass budget of the Antarctic ice sheet, through basal melti...
Understanding ice shelf-ocean interaction is fundamental to projecting the Antarctic ice sheet respo...
Thermodynamic flowline and plume models for the ice-shelf/ocean system simplify the ice and ocean dy...
Thermodynamic ablation of ice in contact with the ocean remains poorly understood. Consequently the ...
We investigate the convection and dissolution rate generated when a wall of ice dissolves into seawa...
The Antarctic Ice Sheet, which comprises the largest volume of ice on our planet, is losing mass due...
Models of the circulation beneath ice shelves draw on knowledge gained from observations of the turb...
This study uses laboratory experiments and direct numerical simulation to investigate the turbulent ...
The melting of submerged faces of marine-terminating glaciers is a key contributor to the glacial ma...
The stability of ice shelves depends on the existence of embayments and is largely influenced by ice...
The heat exchange between floating ice and the underlying ocean is determined by the interplay of d...
An ice model, an ocean model, and a method of coupling the models are described. The ice model is a ...
When the inclined base of an ice shelf melts into the ocean, it induces both a statically-stable str...
Models of ocean circulation beneath ice shelves are driven primarily by the heat and freshwater flux...
Antarctica and Greenland have been losing mass at an increasing rate over recent decades. The r...
The ocean is an important control on the mass budget of the Antarctic ice sheet, through basal melti...
Understanding ice shelf-ocean interaction is fundamental to projecting the Antarctic ice sheet respo...
Thermodynamic flowline and plume models for the ice-shelf/ocean system simplify the ice and ocean dy...
Thermodynamic ablation of ice in contact with the ocean remains poorly understood. Consequently the ...
We investigate the convection and dissolution rate generated when a wall of ice dissolves into seawa...
The Antarctic Ice Sheet, which comprises the largest volume of ice on our planet, is losing mass due...
Models of the circulation beneath ice shelves draw on knowledge gained from observations of the turb...
This study uses laboratory experiments and direct numerical simulation to investigate the turbulent ...
The melting of submerged faces of marine-terminating glaciers is a key contributor to the glacial ma...
The stability of ice shelves depends on the existence of embayments and is largely influenced by ice...
The heat exchange between floating ice and the underlying ocean is determined by the interplay of d...
An ice model, an ocean model, and a method of coupling the models are described. The ice model is a ...
When the inclined base of an ice shelf melts into the ocean, it induces both a statically-stable str...
Models of ocean circulation beneath ice shelves are driven primarily by the heat and freshwater flux...
Antarctica and Greenland have been losing mass at an increasing rate over recent decades. The r...
The ocean is an important control on the mass budget of the Antarctic ice sheet, through basal melti...
Understanding ice shelf-ocean interaction is fundamental to projecting the Antarctic ice sheet respo...
Thermodynamic flowline and plume models for the ice-shelf/ocean system simplify the ice and ocean dy...