Research Article
Physical characteristics of the Antarctic sea-ice zone derived from modelling and observations
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- 20 January 2017, pp. 1-7
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First results of the Sea-Ice Model Intercomparison Project (SIMIP)
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- 20 January 2017, pp. 8-11
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The effect of sea-ice parameterizations on the simulation of the Arctic ice pack
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- 20 January 2017, pp. 12-16
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The Arctic ocean-ice system studied by contamination modelling
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- 20 January 2017, pp. 17-21
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The possible effects of including ridge-related roughness in air–ice drag parameterization: a sensitivity study
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- 20 January 2017, pp. 22-25
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On modeling sea-ice fracture and flow in numerical investigations of climate
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- 18 May 2017, pp. 26-32
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Development and evaluation of surface shortwave flux parameterizations for use in sea-ice models
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- 20 January 2017, pp. 33-37
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Parameterization of fluxes over heterogeneous snow cover for GCMs
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- 20 January 2017, pp. 38-41
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Snow-cover simulations in mountainous regions based on general circulation model outputs
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- 20 January 2017, pp. 42-45
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Sensitivity tests of the Canadian Land Surface Scheme (CLASS) for Arctic tundra
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- 20 January 2017, pp. 46-50
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The changing albedo of the Greenland ice sheet: implications for climate modeling
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- 20 January 2017, pp. 51-57
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A high-resolution model of the 100 ka ice-age cycle
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- 20 January 2017, pp. 58-65
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Coupling a multi-layered snow model with a GCM
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- 20 January 2017, pp. 66-72
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The Antarctic surface mass balance in a stretched grid general circulation model
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- 20 January 2017, pp. 73-78
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The climate of antarctica in the UGAMP GCM: Sensitivity to topography
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- 20 January 2017, pp. 79-84
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Use of ice-sheet normal modes for initialization and modelling small changes
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- 20 January 2017, pp. 85-95
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Sensitivity of an atmospheric general circulation model to the parameterization of leads in sea ice
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- 20 January 2017, pp. 96-101
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On the role of sea-ice transport in modifying Arctic responses to global climate change
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- Published online by Cambridge University Press:
- 20 January 2017, pp. 102-106
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Simulation of sea ice in the NCAR Climate System Model
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- 20 January 2017, pp. 107-110
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On the impact of sea ice in a global ocean circulation model
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- 20 January 2017, pp. 111-115
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