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Wet tropospheric correction for satellite altimetry using SIRGAS-CON products

Title
Wet tropospheric correction for satellite altimetry using SIRGAS-CON products
Type
Article in International Scientific Journal
Year
2022
Authors
Prado, A
(Author)
Other
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Vieira, T
(Author)
Other
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N. Pires
(Author)
FCUP
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Fernandes, MJ
(Author)
FCUP
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Journal
The Journal is awaiting validation by the Administrative Services.
Vol. 12
Pages: 211-229
ISSN: 2081-9919
Other information
Authenticus ID: P-00X-QAD
Abstract (EN): The wet tropospheric correction (WTC) is a required correction to satellite altimetry measurements, mainly due to the atmospheric water vapor delay. On-board microwave radiometers (MWR) provide information for WTC estimation but fail in coastal zones and inland waters. In view to recover the WTC in these areas, the Global Navigation Satellite System (GNSS)-derived Path Delay Plus (GPD+) method, developed by the University of Porto, uses Zenith Tropospheric Delays from GNSS global and regional networks' stations combined with other sources of information, providing a WTC solution for all along-track altimeter points. To densify the existing dataset used by GPD+, it is necessary to add new GNSS stations, mainly in the southern hemisphere, in regions such as South America, Africa and Oceania. This work aims to exploit the SIRGAS-CON data and its potential for densification of the GPD+ input dataset in Latin America and to improve GPD+ performance. The results for the three analyzed satellites (Sentinel-3A, Sentinel-3B and CryoSat-2) show that, when compared with the WTC from GNSS and radiosondes, the densified GPD+ WTC leads to a reduction in the RMS of the WTC differences with respect to the non-densified GPD+ solution, up to 2 mm for the whole region and up to 5 mm in some locations.
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 19
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Assessment of SIRGAS-CON tropospheric products using ERA5 and IGS (2022)
Article in International Scientific Journal
Prado, A; Vieira, T; Fernandes, MJ
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