TY - JOUR
T1 - Modeling the high-frequency barotropic response of the ocean to atmospheric disturbances
T2 - Sensitivity to forcing, topography, and friction
AU - Hirose, Naoki
AU - Fukumori, Ichiro
AU - Zlotnicki, Victor
AU - Ponte, Rui M.
PY - 2001/12/15
Y1 - 2001/12/15
N2 - This study examines high-frequency sea level variations forced by changes in surface atmospheric pressure and wind and their sensitivity to different forcing mechanisms, bottom topography resolution, and amount of friction in a barotropic ocean model. Optimal model performance, defined in terms of the explained variance in satellite altimeter and bottom pressure data, is found when using relatively strong friction, equivalent to a damping timescale of only a few days over the deep ocean, and topography with minimal smoothing. Spatial variations of the optimal friction parameter seem to reflect the roughness of bottom topography. The model demonstrates skill in simulating the wind-driven response as well as the nonequilibrium response to atmospheric pressure variations.
AB - This study examines high-frequency sea level variations forced by changes in surface atmospheric pressure and wind and their sensitivity to different forcing mechanisms, bottom topography resolution, and amount of friction in a barotropic ocean model. Optimal model performance, defined in terms of the explained variance in satellite altimeter and bottom pressure data, is found when using relatively strong friction, equivalent to a damping timescale of only a few days over the deep ocean, and topography with minimal smoothing. Spatial variations of the optimal friction parameter seem to reflect the roughness of bottom topography. The model demonstrates skill in simulating the wind-driven response as well as the nonequilibrium response to atmospheric pressure variations.
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U2 - 10.1029/2000jc000763
DO - 10.1029/2000jc000763
M3 - Article
AN - SCOPUS:0035723095
SN - 2169-9275
VL - 106
SP - 30987
EP - 30995
JO - Journal of Geophysical Research: Oceans
JF - Journal of Geophysical Research: Oceans
IS - C12
M1 - 2000JC000763
ER -