Improving the Altimeter-Derived Surface Currents Using Sea Surface Temperature (SST) Data: A Sensitivity Study to SST Products

被引:19
|
作者
Ciani, Daniele [1 ]
Rio, Marie-Helene [2 ]
Nardelli, Bruno Buongiorno [3 ]
Etienne, Helene [4 ]
Santoleri, Rosalia [1 ]
机构
[1] CNR, Ist Sci Marine CNR ISMAR, I-00133 Rome, Italy
[2] European Space Agcy, European Space Res Inst ESA ESRIN, I-00044 Frascati, Italy
[3] CNR, Ist Sci Marine CNR ISMAR, I-80133 Naples, Italy
[4] Collecte Localisat Satellites CLS, F-31520 Ramonville St Agne, France
关键词
sea surface temperature; ocean currents; altimetry; earth observations synergy; GULF-OF-MEXICO; GLOBAL OCEAN; EDDIES; VARIABILITY; VALIDATION; VELOCITY; SYSTEM; MOTION; FLOW;
D O I
10.3390/rs12101601
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Measurements of ocean surface topography collected by satellite altimeters provide geostrophic estimates of the sea surface currents at relatively low resolution. The effective spatial and temporal resolution of these velocity estimates can be improved by optimally combining altimeter data with sequences of high resolution interpolated (Level 4) Sea Surface Temperature (SST) data, improving upon present-day values of approximately 100 km and 15 days at mid-latitudes. However, the combined altimeter/SST currents accuracy depends on the area and input SST data considered. Here, we present a comparative study based on three satellite-derived daily SST products: the Remote Sensing Systems (REMSS, 1/10ffi resolution), the UK Met Office OSTIA (1/20ffi resolution), and the Multiscale Ultra-High resolution SST (1/100ffi resolution). The accuracy of the marine currents computed with our synergistic approach is assessed by comparisons with in-situ estimated currents derived from a global network of drifting buoys. Using REMSS SST, the meridional currents improve up to more than 20% compared to simple altimeter estimates. The maximum global improvements for the zonal currents are obtained using OSTIA SST, and reach 6%. Using the OSTIA SST also results in slight improvements ('1.3%) in the zonal flow estimated in the Southern Ocean (45ffi S to 70ffiS). The homogeneity of the input SST effective spatial resolution is identified as a crucial requirement for an accurate surface current reconstruction. In our analyses, this condition was best satisfied by the lower resolution SST products considered.
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页数:16
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