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A Thermodynamic Coupled Ice-Ocean Model of the Marginal Ice Zone
Thermodynamic Coupled Ice-Ocean Model Marginal Ice Zone
2009/1/21
A coupled ice-ocean model for thermodynamic growth of sea ice suitable for coupling with a similar dynamic model is considered. The model is balanced locally in that no horizontal (or vertical) advect...
The Effect of the Marginal Ice Zone on the Directional Wave Spectrum of the Ocean
Scott Polar Research Institute Institute of Oceanographic Sciences
2009/1/10
During the MIZEX-84 experiment in the Greenland Sea in June–July 1984, a cooperative program was carried out between the Scott Polar Research Institute (SPRI) and the Institute of Oceanographic Scienc...
Wave Attenuation and Wave Drift in the Marginal Ice Zone
marginal ice zone Wave Attenuation Wave Drift
2009/1/9
Surface gravity waves in a viscous rotating ocean are studied theoretically when they penetrate an area covered by highly concentrated brashlike ice. The motion is described by a Lagrangian formulatio...
An Ice Breeze Mechanism for an Ice Divergence-Convergence Criterion in the Marginal Ice Zone
marginal ice zone Ice Breeze Mechanism Ice Divergence-Convergence Criterion
2009/1/8
A coupled air-ice-ocean theoretical model for the marginal ice zone (MIZ) is developed and used to show that an off-ice and divergent wind field not only produces a dilation of the MIZ (as is generall...
Wave-Induced Drift Force in the Marginal Ice Zone
Wind waves Wave-Induced Drift Force Marginal Ice Zone
2008/12/23
Wind waves are commonly ignored when modeling the ice motion in the marginal ice zone. In order to estimate the importance of the wave forcing, an expression for the second-order wave-induced drift fo...
Directional Wave Spectra Estimation in a Marginal Ice Zone Using Linear Prediction
synthetic aperature radar wave field Marginal Ice Zone
2008/12/22
A synthetic aperature radar (SAR) image of a wave field penetrating a marginal ice zone off Newfoundland was analyzed in order to get insight into the physical processes responsible for the swell atte...