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Detailed Reference Information |
Bisagni, J.J. (1991). Ocean surface topography measured by the Geosat radar altimeter during the Frontal Air-Sea Interaction Experiment. Journal of Geophysical Research 96: doi: 10.1029/91JC02461. issn: 0148-0227. |
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An objective analysis (OA) technique was used to analyze Geosat Geodetic Mission residual sea height anomalies (RSHA) for the Frontal Air-Sea interaction Experiment (FASINEX), conducted in the western North Atlantic. Preprocessing of the Geosat data included removal of a mean sea surface and orbit error and corrections for tides, wave height, inverse barometer, and ionospheric and dry tropospheric effects. Geosat data were not corrected for water vapor. Central to the analysis was the computation of a spatially anisotropic, time-dependent autocorrelation function directly from the Geosat data. Results show a single autocorrelation function peak, having a diameter of ~270 km at 0-day time lag. A 15-month time series of RSHA topography was constructed at 10-day interval, forming a set of 47 OA maps. These maps show a field of topographic features propagating to the west at ≂4 km d-1. The features exhibited spatial and temporal scales of ~200 km and ~50 days, respectively. The root-mean-square (rms) of the OA-derived feature amplitudes fluctuated slowly between 0.05 and 0.09 m with a period of ~200 days over the 15-month intervals. These fluctuations appeared to be related to the passage of large-scale, north-southwest trending sea surface temperature (SST) anomaly features reported for FASINEX, which were surface manifestations of large-scale, first-mode baroclinic Rossby waves. The rms amplitude of the OA-derived features was maximal (minimal) during periods of negative (positive) SST anomaly, when the depths of the mixed layer and main thermocline in the upper ocean shoaled (deepened). The fluctuations also appeared to be correlated with the structure of the field. Periods of decreased feature amplitudes corresponded to a ''closely packed'' structure, while during times of increased amplitudes, the field structure became ''zonal'' with regions of alternating sign. During FASINEX (January--June 1986) the field was characterized by the closely packed structure and decreasing feature amplitudes. This corresponded to the period of positive SST anomaly and high upper ocean heat content reported for FASINEX. ¿ American Geophysical Union 1991 |
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Abstract |
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Keywords
Oceanography, Physical, Air-sea interactions, Oceanography, Physical, Eddies and mesoscale processes, Oceanography, General, Remote sensing and electromagnetic processes, Oceanography, Physical, Fronts and jets |
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Publisher
American Geophysical Union 2000 Florida Avenue N.W. Washington, D.C. 20009-1277 USA 1-202-462-6900 1-202-328-0566 service@agu.org |
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