SENSITIVITY STUDY OF A DYNAMIC THERMODYNAMIC SEA ICE MODEL

被引:68
作者
HOLLAND, DM
MYSAK, LA
MANAK, DK
OBERHUBER, JM
机构
[1] MCGILL UNIV, CTR CLIMATE & GLOBAL CHANGE RES, 805 SHERBROOKE ST W, MONTREAL H3A 2K6, QUEBEC, CANADA
[2] MCGILL UNIV, DEPT ATMOSPHER & OCEAN SCI, MONTREAL H3A 2T5, QUEBEC, CANADA
[3] UNIV HAMBURG, INST METEOROL, W-2000 HAMBURG 13, GERMANY
关键词
D O I
10.1029/92JC02015
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
A numerical simulation of the seasonal sea ice cover in the Arctic Ocean and the Greenland, Iceland, and Norwegian seas is presented. The sea ice model is extracted from Oberhuber's (1990) coupled sea ice-mixed layer-isopycnal general circulation model and is written in spherical coordinates. The advantage of such a model over previous sea ice models is that it can be easily coupled to either global atmospheric or ocean general circulation models written in spherical coordinates. In this model, the thermodynamics are a modification of that of Parkinson and Washington (1979), while the dynamics use the full Hibler (1979) viscous-plastic rheology. Monthly thermodynamic and dynamic forcing fields for the atmosphere and ocean are specified. The simulations of the seasonal cycle of ice thickness, compactness, and velocity, for a control set of parameters, compare favorably with the known seasonal characteristics of these fields. A sensitivity study of the control simulation of the seasonal sea ice cover is presented. The sensitivity runs are carried out under three different themes, namely, numerical conditions, parameter values, and physical processes. This last theme refers to experiments in which physical processes are either newly added or completely removed from the model. Approximately 80 sensitivity runs have been performed in which a change from the control run environment has been implemented. Comparisons have been made between the control run and a particular sensitivity run based on time series of the seasonal cycle of the domain-averaged ice thickness, compactness, areal coverage, and kinetic energy. In addition, spatially varying fields of ice thickness, compactness, velocity, and surface temperature for each season are presented for selected experiments. A brief description and discussion of the more interesting experiments are presented. The simulation of the seasonal cycle of Arctic sea ice cover is shown to be robust.
引用
收藏
页码:2561 / 2586
页数:26
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