Preprints
https://doi.org/10.5194/egusphere-2026-4414
https://doi.org/10.5194/egusphere-2026-4414
11 Aug 2026
 | 11 Aug 2026
Status: this preprint is open for discussion and under review for Earth Observation (EO).

Dual-satellite sea level observations in the ice-covered Southern Ocean, 2002–2024

Isabelle F. M. White, Oana Dragomir, Alessandro Silvano, Alberto C. Naveira Garabato, Anna E. Hogg, Pierre Dutrieux, Laura Herraiz-Borreguero, and Jennifer Cocks

Abstract. Long-term and spatially continuous data is hard to attain in the remote and harsh environment of the Southern Ocean. Using satellite altimetry, we have been able to measure the subpolar sea surface height (SSH) in the open ocean and sea ice zone since 2002 using Envisat and CrysoSat-2. Here we present a 22-year sea level anomaly (SLA) 1° (longitude) by 0.5° (latitude) gridded product from 50° S to the Antarctic coast. This is the longest SLA product to date for the seasonally ice-covered Southern Ocean. We correct for intra- and inter-satellite offsets for the full-time series and overlapping period 01/11/2010 to 01/03/2012, respectively, to level CryoSat-2 data to Envisat. Acquisition modes include synthetic aperture radar interferometry (SARIn), which leads to increased spatial cover and resolution near the coast and decreased product uncertainty. We calculate the product uncertainty using the standard error for offset climatologies, satellite crossover locations and the seasonal variability between four geoids. This results in an uncertainty of 0.78 cm. Validation of our product with the CMEMS reanalysis product, bottom pressure recorders, and other intersatellite products gives average correlations of 0.93, 0.67 and 0.93 (0.81) for the open ocean (sea ice zone), further validating the new product. This product has the potential to improve our ability to identify regional- and large-scale shifts in long-term sea level trends and relate these to climate forcing. It also provides a comprehensive error calculation for a merged Southern Ocean altimetry product.

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Isabelle F. M. White, Oana Dragomir, Alessandro Silvano, Alberto C. Naveira Garabato, Anna E. Hogg, Pierre Dutrieux, Laura Herraiz-Borreguero, and Jennifer Cocks

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Isabelle F. M. White, Oana Dragomir, Alessandro Silvano, Alberto C. Naveira Garabato, Anna E. Hogg, Pierre Dutrieux, Laura Herraiz-Borreguero, and Jennifer Cocks

Data sets

Southern Ocean Dynamic Ocean Topography and Sea Level Anomaly, 2002-2024 Isabelle F. M. White and O. Dragomir https://doi.org/10.5281/zenodo.21454184

Isabelle F. M. White, Oana Dragomir, Alessandro Silvano, Alberto C. Naveira Garabato, Anna E. Hogg, Pierre Dutrieux, Laura Herraiz-Borreguero, and Jennifer Cocks

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Short summary
We present a 22-year sea surface height product in the ice-covered Southern Ocean from Envisat and CryoSat-2 satellite altimetry data. Our product is 1° longitude by 0.5° latitude from 50° S to the Antarctic coast. Validation with in-situ, independent satellite and reanalysis data shows it captures seasonal and interannual variability. This supports long-term study of large-scale sea level trends and processes in the Southern Ocean, a region that is observing rapid sea ice and ice sheet melting.
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