A benchmark dataset of water levels and waves for SWOT validation in the St. Lawrence Estuary and Saguenay Fjord, Quebec, Canada

This manuscript presents a comprehensive and evolving in situ dataset of water levels and wave parameters collected from March 2023 onward in the St. Lawrence Estuary and Saguenay Fjord (Quebec, Canada), supporting validation activities for the Surface Water and Ocean Topography (SWOT) satellite mission. The dataset integrates water level measurements from 18 barometrically compensated pressure transducers, where possible corrected for water density using collocated salinity and temperature data, supplemented with 13 GNSS-Interferometric Reflectometry (GNSS-IR) sensors. All water level data are referenced to a common vertical datum via real-time kinematic (RTK) GNSS corrections. Three directional wave buoys provided supplementary observations of surface wave conditions, including bulk parameters and directional spectra. Quality-controlled and rigorous processing protocols were implemented across all sensor types, with particular attention to referencing accuracy and correction for environmental influences. The observational network has the densest spatial coverage of water level and wave measurements ever achieved in this region, offering unprecedented opportunities to support the validation of SWOT’s nadir and wide-swath altimetry products, as well as for hydrodynamic model calibration and spatio-temporal studies of tidal and wave processes in complex estuarine environments. With ongoing data collection, this evolving benchmark dataset is publicly accessible at https://doi.org/10.5281/zenodo.18225504 (Matte et al., 2026) and will be updated approximately annually, as new observations are retrieved, processed, and quality controlled, to support continued SWOT validation throughout the mission and a broad range of estuarine research applications.

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Publication Details

Journal
Earth system science data
Published
2026-10-05
DOI
https://doi.org/10.5194/essd-18-7269-2026
Primary Topic
Ocean Waves and Remote Sensing
Type
article
Field-Weighted Citation Impact
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article

A benchmark dataset of water levels and waves for SWOT validation in the St. Lawrence Estuary and Saguenay Fjord, Quebec, Canada

Marc Simard, Xavier Chartrand, Daniel L. L. Peters, Cédric P. Chavanne et al.
Earth system science data
Ocean Waves and Remote Sensing
article

A benchmark dataset of water levels and waves for SWOT validation in the St. Lawrence Estuary and Saguenay Fjord, Quebec, Canada

Marc Simard, Xavier Chartrand, Daniel L. L. Peters, Cédric P. Chavanne, Anthony Ouellet, Pascal Matte, Mohammed Dabboor, Alexandra Christensen, David Purnell, Mélanie Trudel, François Anctil, Silvia Innocenti, Gabriela Siles, Scott Bédart, Jonathan Morin, Yann Côté-Nadeau, Francis Fortin-Legault, Élaine Desrosiers
article en

Abstract

This manuscript presents a comprehensive and evolving in situ dataset of water levels and wave parameters collected from March 2023 onward in the St. Lawrence Estuary and Saguenay Fjord (Quebec, Canada), supporting validation activities for the Surface Water and Ocean Topography (SWOT) satellite mission. The dataset integrates water level measurements from 18 barometrically compensated pressure transducers, where possible corrected for water density using collocated salinity and temperature data, supplemented with 13 GNSS-Interferometric Reflectometry (GNSS-IR) sensors. All water level data are referenced to a common vertical datum via real-time kinematic (RTK) GNSS corrections. Three directional wave buoys provided supplementary observations of surface wave conditions, including bulk parameters and directional spectra. Quality-controlled and rigorous processing protocols were implemented across all sensor types, with particular attention to referencing accuracy and correction for environmental influences. The observational network has the densest spatial coverage of water level and wave measurements ever achieved in this region, offering unprecedented opportunities to support the validation of SWOT’s nadir and wide-swath altimetry products, as well as for hydrodynamic model calibration and spatio-temporal studies of tidal and wave processes in complex estuarine environments. With ongoing data collection, this evolving benchmark dataset is publicly accessible at https://doi.org/10.5281/zenodo.18225504 (Matte et al., 2026) and will be updated approximately annually, as new observations are retrieved, processed, and quality controlled, to support continued SWOT validation throughout the mission and a broad range of estuarine research applications.

Earth system science dataVol. 18(10)
California Institute of Technology (US), Canadian Hydrographic Service (CA), Fisheries and Oceans Canada (CA), Jet Propulsion Laboratory (US), Environment and Climate Change Canada (CA), Université de Sherbrooke (CA), Université du Québec à Rimouski (CA), Université Laval (CA), Institut des sciences de la mer
Openalex Percentile: Top 14%
Ocean Waves and Remote Sensing
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