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Get Free AccessIn this study, 11 CBERS 2B and 1 LANDSAT 5-TM satellite images from 2008 were used to estimate the suspended sediment concentration and the total suspended sediment load of the Parnaíba River (NE-Brazil). The calculation of the amount of sediment in suspension was performed using Tassan’s algorithm, which was originally developed for use on LANDSAT 5-TM images; therefore, the CBERS 2B images were spectrally calibrated using LANDSAT 5-TM at-satellite radiance. The application of atmospheric correction to the images was necessary to account for meteorological influence on the spectral data prior to the calculation of the suspended sediment concentration. Three types of dark object subtraction and the 6S model were tested, and one type of dark object subtraction was chosen as the appropriate atmospheric correction method. Tassan’s algorithm requires in situ calibration; therefore, suspended sediment concentrations measured in water samples from the Parnaíba River mouth were used to calibrate the algorithm. The results revealed that the variation of suspended sediment concentration was strongly influenced by seasonal precipitation. In 2008, the suspended sediment released by the Parnaíba River was approximately 2.54×106 tons. The discharged sediment formed a sediment plume on the inner continental shelf. The extension of the plume depended on the specific hydrodynamic conditions that were forced mainly by the strength of river runoff, longshore currents, tidal currents and amplitudes, and wind and wave climate.
André Giskard Aquino da Silva, Venerando Eustáquio Amaro, Karl Stattegger, Klaus Schwarzer, Helenice Vital, Björn Heise (2015). Spectral calibration of CBERS 2B multispectral satellite images to assess suspended sediment concentration. ISPRS Journal of Photogrammetry and Remote Sensing, 104, pp. 53-62, DOI: 10.1016/j.isprsjprs.2015.02.011.
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Type
Article
Year
2015
Authors
6
Datasets
0
Total Files
0
Language
English
Journal
ISPRS Journal of Photogrammetry and Remote Sensing
DOI
10.1016/j.isprsjprs.2015.02.011
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