Exact Solutions of Wind-Driven Coastal Upwelling and Downwelling over Sloping Topography

被引:12
|
作者
Choboter, P. F. [1 ]
Duke, Dana [1 ]
Horton, J. P. [1 ]
Sinz, Paul [1 ]
机构
[1] Calif Polytech State Univ San Luis Obispo, Dept Math, San Luis Obispo, CA 93407 USA
关键词
OREGON CONTINENTAL-SHELF; CURRENTS; MODEL; CIRCULATION; FLUID;
D O I
10.1175/2011JPO4527.1
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
The dynamics of wind-driven coastal upwelling and downwelling are studied using a simplified dynamical model. Exact solutions are examined as a function of time and over a family of sloping topographies. Assumptions in the two-dimensional model include a frictionless ocean interior below the surface Ekman layer and no along-slope dependence of the variables; however, dependence in the cross-slope and vertical directions is retained. Density and the along-slope component of momentum are advected by the cross-slope velocity, with thermal wind balance maintained at all times. The time-dependent initial value problem is solved with constant initial stratification and no initial along-slope flow. Previously, this model has been used to study upwelling over flat-bottomed ocean, but the novel features in this work are the study of exact solutions for a family of sloping topographic profiles, for both upwelling and downwelling. The exact solutions are compared to numerical solutions from a primitive equation ocean model configured in a similar two-dimensional geometry. The exact solutions predict that deep undercurrents will develop only over steep topographic slopes and the cross-slope flow in the deep frictionless interior will be increasingly surface intensified as the topographic slope increases.
引用
收藏
页码:1277 / 1296
页数:20
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