Salinity and Stratification at the Sea Ice Edge (SASSIE): An oceanographic field campaign in the Beaufort Sea

As our planet warms, Arctic sea ice coverage continues to decline resulting in complex feedbacks with the climate system. The core objective of NASA’s Salinity and Stratification at the Sea Ice Edge (SASSIE) mission is to understand how ocean salinity and near-surface stratification affect...

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Main Authors: Drushka, Kyla, Westbrook, Elizabeth, Bingham, Frederick, Gaube, Peter, Dickinson, Suzanne, Fournier, Severine, Menezes, Viviane, Misra, Sidharth, Perez, Jaynise, Rainville, Edwin J., Schanze, Julian, Schmidgall, Carlyn, Shcherbina, Andrey, Steele, Michael, Thomson, Jim, Zippel, Seth
Format: Text
Language:English
Published: 2024
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Online Access:https://doi.org/10.5194/essd-2023-406
https://essd.copernicus.org/preprints/essd-2023-406/
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spelling ftcopernicus:oai:publications.copernicus.org:essdd115211 2024-09-15T17:58:24+00:00 Salinity and Stratification at the Sea Ice Edge (SASSIE): An oceanographic field campaign in the Beaufort Sea Drushka, Kyla Westbrook, Elizabeth Bingham, Frederick Gaube, Peter Dickinson, Suzanne Fournier, Severine Menezes, Viviane Misra, Sidharth Perez, Jaynise Rainville, Edwin J. Schanze, Julian Schmidgall, Carlyn Shcherbina, Andrey Steele, Michael Thomson, Jim Zippel, Seth 2024-01-19 application/pdf https://doi.org/10.5194/essd-2023-406 https://essd.copernicus.org/preprints/essd-2023-406/ eng eng doi:10.5194/essd-2023-406 https://essd.copernicus.org/preprints/essd-2023-406/ eISSN: 1866-3516 Text 2024 ftcopernicus https://doi.org/10.5194/essd-2023-406 2024-08-28T05:24:15Z As our planet warms, Arctic sea ice coverage continues to decline resulting in complex feedbacks with the climate system. The core objective of NASA’s Salinity and Stratification at the Sea Ice Edge (SASSIE) mission is to understand how ocean salinity and near-surface stratification affect upper ocean heat content, and thus sea ice freeze and melt. SASSIE specifically focuses on the formation of Arctic sea ice in autumn. The SASSIE field campaign in 2022 collected detailed observations of upper ocean properties and meteorology near the sea ice edge in the Beaufort Sea using ship-based and piloted and drifting assets. The observations collected during SASSIE include vertical profiles of stratification up to the sea surface, air-sea fluxes, and ancillary measurements that are being used to better understand the role of salinity in coupled Arctic air-sea-ice processes. This publication provides a detailed overview of the activities during the 2022 SASSIE campaign and presents the publicly available datasets generated by this mission, inducing an accompanying repository that highlights the numerical routines used to generate the figures shown in this manuscript. Text Beaufort Sea Sea ice Copernicus Publications: E-Journals
institution Open Polar
collection Copernicus Publications: E-Journals
op_collection_id ftcopernicus
language English
description As our planet warms, Arctic sea ice coverage continues to decline resulting in complex feedbacks with the climate system. The core objective of NASA’s Salinity and Stratification at the Sea Ice Edge (SASSIE) mission is to understand how ocean salinity and near-surface stratification affect upper ocean heat content, and thus sea ice freeze and melt. SASSIE specifically focuses on the formation of Arctic sea ice in autumn. The SASSIE field campaign in 2022 collected detailed observations of upper ocean properties and meteorology near the sea ice edge in the Beaufort Sea using ship-based and piloted and drifting assets. The observations collected during SASSIE include vertical profiles of stratification up to the sea surface, air-sea fluxes, and ancillary measurements that are being used to better understand the role of salinity in coupled Arctic air-sea-ice processes. This publication provides a detailed overview of the activities during the 2022 SASSIE campaign and presents the publicly available datasets generated by this mission, inducing an accompanying repository that highlights the numerical routines used to generate the figures shown in this manuscript.
format Text
author Drushka, Kyla
Westbrook, Elizabeth
Bingham, Frederick
Gaube, Peter
Dickinson, Suzanne
Fournier, Severine
Menezes, Viviane
Misra, Sidharth
Perez, Jaynise
Rainville, Edwin J.
Schanze, Julian
Schmidgall, Carlyn
Shcherbina, Andrey
Steele, Michael
Thomson, Jim
Zippel, Seth
spellingShingle Drushka, Kyla
Westbrook, Elizabeth
Bingham, Frederick
Gaube, Peter
Dickinson, Suzanne
Fournier, Severine
Menezes, Viviane
Misra, Sidharth
Perez, Jaynise
Rainville, Edwin J.
Schanze, Julian
Schmidgall, Carlyn
Shcherbina, Andrey
Steele, Michael
Thomson, Jim
Zippel, Seth
Salinity and Stratification at the Sea Ice Edge (SASSIE): An oceanographic field campaign in the Beaufort Sea
author_facet Drushka, Kyla
Westbrook, Elizabeth
Bingham, Frederick
Gaube, Peter
Dickinson, Suzanne
Fournier, Severine
Menezes, Viviane
Misra, Sidharth
Perez, Jaynise
Rainville, Edwin J.
Schanze, Julian
Schmidgall, Carlyn
Shcherbina, Andrey
Steele, Michael
Thomson, Jim
Zippel, Seth
author_sort Drushka, Kyla
title Salinity and Stratification at the Sea Ice Edge (SASSIE): An oceanographic field campaign in the Beaufort Sea
title_short Salinity and Stratification at the Sea Ice Edge (SASSIE): An oceanographic field campaign in the Beaufort Sea
title_full Salinity and Stratification at the Sea Ice Edge (SASSIE): An oceanographic field campaign in the Beaufort Sea
title_fullStr Salinity and Stratification at the Sea Ice Edge (SASSIE): An oceanographic field campaign in the Beaufort Sea
title_full_unstemmed Salinity and Stratification at the Sea Ice Edge (SASSIE): An oceanographic field campaign in the Beaufort Sea
title_sort salinity and stratification at the sea ice edge (sassie): an oceanographic field campaign in the beaufort sea
publishDate 2024
url https://doi.org/10.5194/essd-2023-406
https://essd.copernicus.org/preprints/essd-2023-406/
genre Beaufort Sea
Sea ice
genre_facet Beaufort Sea
Sea ice
op_source eISSN: 1866-3516
op_relation doi:10.5194/essd-2023-406
https://essd.copernicus.org/preprints/essd-2023-406/
op_doi https://doi.org/10.5194/essd-2023-406
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