Hydrostatic, quasi-hydrostatic, and nonhydrostatic ocean modeling

被引:1123
作者
Marshall, J
Hill, C
Perelman, L
Adcroft, A
机构
[1] Ctr. Meteorol. and Phys. Oceanogr., Dept. Earth, Atmosph./Planet. Sci., Massachusetts Inst. of Technology, Cambridge
[2] Ctr. Meteorol. and Phys. Oceanogr., Dept. Earth, Atmosph./Planet. Sci., Massachusetts Inst. of Technology, Cambridge
来源
JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS | 1997年 / 102卷 / C3期
关键词
D O I
10.1029/96JC02776
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
Ocean models based on consistent hydrostatic, quasi-hydrostatic, and nonhydrostatic equation sets are formulated and discussed. The quasi-hydrostatic and nonhydrostatic sets are more accurate than the widely used hydrostatic primitive equations. Quasi-hydrostatic models relax the precise balance between gravity and pressure gradient forces by including in a consistent manner cosine-of-latitude Coriolis terms which are neglected in primitive equation models. Nonhydrostatic models employ the full incompressible Navier Stokes equations; they are required in the study pf small-scale phenomena in the ocean which are not in hydrostatic balance. We outline a solution strategy for the Navier Stokes model on the sphere that performs efficiently across the whole range of scales in the ocean, from the convective scale to the global scale, and so leads to a model of great versatility. In;he hydrostatic limit the Navier Stokes' model involves no more computational effort than those models which assume strict hydrostatic balance on all scales. The strategy is illustrated in simulations of laboratory experiments in rotating convection on scales of a few centimeters, simulations of convective and baroclinic instability of the mixed layer on the 1- to 10-km scale, and simulations of the global circulation of the ocean.
引用
收藏
页码:5733 / 5752
页数:20
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