The evolution of the Antarctic ice sheet for the last 200 ky is simulated with a finite difference thermomechanical model based on the shallow ice approximation. The model depends on the surface temperature, the ice accumulation rate, the geothermal heat flux and the basal sliding coefficient, which are estimated with large uncertainty. Therefore a sensitivity analysis is applied to assess the most critical parameters
Simulations of the glacial–interglacial history of the Antarctic Ice Sheet provide insights into dyn...
The equation describing the surface evolution of a large ice sheet is examined on the basis of a sca...
On glacial-interglacial time scales, isostatic effects of ice sheet volume changes may have a large ...
AbstractThe evolution of the Antarctic ice sheet for the last 200ky is simulated with a finite diffe...
The evolution of the Antarctic ice sheet for the last 200,000 years is simulated with a finite diffe...
Abstract The evolution of the Antarctic ice sheet for the last 200 ky is simulated with a finite dif...
We present the effects of changing two sliding parameters, a deformational velocity parameter and tw...
We present the effects of changing two sliding parameters, a deformational velocity parameter and tw...
An efficient numerical ice sheet model, including time dependence and full thermo-mechanical couplin...
Ice-sheet modelling is an important tool for predicting the possible response of ice sheets to clima...
Numerical modelling of ice sheets and glaciers has become a useful tool in glaciological research. A...
An efficient numerical ice-sheet model, including time dependence and full thermo-mechanical coupli...
The sensitivity of long-term Cenozoic variations of the East Antarctic ice sheet to geothermal heat ...
On the longer climatic time scales, changes in the elevation and extent of the Antarctic ice sheet h...
Due to a scarcity of observations and its long memory of uncertain past climate, the Antarctic Ice S...
Simulations of the glacial–interglacial history of the Antarctic Ice Sheet provide insights into dyn...
The equation describing the surface evolution of a large ice sheet is examined on the basis of a sca...
On glacial-interglacial time scales, isostatic effects of ice sheet volume changes may have a large ...
AbstractThe evolution of the Antarctic ice sheet for the last 200ky is simulated with a finite diffe...
The evolution of the Antarctic ice sheet for the last 200,000 years is simulated with a finite diffe...
Abstract The evolution of the Antarctic ice sheet for the last 200 ky is simulated with a finite dif...
We present the effects of changing two sliding parameters, a deformational velocity parameter and tw...
We present the effects of changing two sliding parameters, a deformational velocity parameter and tw...
An efficient numerical ice sheet model, including time dependence and full thermo-mechanical couplin...
Ice-sheet modelling is an important tool for predicting the possible response of ice sheets to clima...
Numerical modelling of ice sheets and glaciers has become a useful tool in glaciological research. A...
An efficient numerical ice-sheet model, including time dependence and full thermo-mechanical coupli...
The sensitivity of long-term Cenozoic variations of the East Antarctic ice sheet to geothermal heat ...
On the longer climatic time scales, changes in the elevation and extent of the Antarctic ice sheet h...
Due to a scarcity of observations and its long memory of uncertain past climate, the Antarctic Ice S...
Simulations of the glacial–interglacial history of the Antarctic Ice Sheet provide insights into dyn...
The equation describing the surface evolution of a large ice sheet is examined on the basis of a sca...
On glacial-interglacial time scales, isostatic effects of ice sheet volume changes may have a large ...