A position and wave spectra dataset of Marginal Ice Zone dynamics collected around Svalbard in 2022 and 2023

Sea ice is a key element of the global Earth system, with a major impact on global climate and regional weather. Unfortunately, accurate sea ice modeling is challenging due to the diversity and complexity of underlying physics happening there, and a relative lack of ground truth observations. This i...

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Published in:Scientific Data
Main Authors: Rabault, Jean, Taelman, Catherine, Idžanović, Martina, Hope, Gaute, Nose, Takehiko, Kristoffersen, Yngve, Jensen, Atle, Breivik, Øyvind, Bryhni, Helge Thomas, Hoppmann, Mario, Demchev, Denis, Korosov, Anton, Johansson, Malin, Eltoft, Torbørn, Dagestad, Knut-Frode, Röhrs, Johannes, Eriksson, Leif, Moro, Marina Durán, Rikardsen, Edel SU, Waseda, Takuji, Kodaira, Tsubasa, Lohse, Johannes, Desjonquères, Thibault, Olsen, Sveinung, Gundersen, Olav, de Aguiar, Victor Cesar Martins, Karlsen, Truls, Babanin, Alexander, Voermans, Joey, Park, Jeong-Won, Müller, Malte
Format: Article in Journal/Newspaper
Language:unknown
Published: Springer Nature 2024
Subjects:
Online Access:https://epic.awi.de/id/eprint/59910/
https://epic.awi.de/id/eprint/59910/1/A%20position%20and%20wave%20spectra%20dataset%20of%20Marginal%20Ice%20Zone%20dynamics%20collected%20around%20Svalbard%20in%202022%20and%202023.pdf
https://doi.org/10.1038/s41597-024-04281-1
https://hdl.handle.net/10013/epic.44306c1f-bfc8-4d22-ab7a-377a4062f72e
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author Rabault, Jean
Taelman, Catherine
Idžanović, Martina
Hope, Gaute
Nose, Takehiko
Kristoffersen, Yngve
Jensen, Atle
Breivik, Øyvind
Bryhni, Helge Thomas
Hoppmann, Mario
Demchev, Denis
Korosov, Anton
Johansson, Malin
Eltoft, Torbørn
Dagestad, Knut-Frode
Röhrs, Johannes
Eriksson, Leif
Moro, Marina Durán
Rikardsen, Edel SU
Waseda, Takuji
Kodaira, Tsubasa
Lohse, Johannes
Desjonquères, Thibault
Olsen, Sveinung
Gundersen, Olav
de Aguiar, Victor Cesar Martins
Karlsen, Truls
Babanin, Alexander
Voermans, Joey
Park, Jeong-Won
Müller, Malte
author_facet Rabault, Jean
Taelman, Catherine
Idžanović, Martina
Hope, Gaute
Nose, Takehiko
Kristoffersen, Yngve
Jensen, Atle
Breivik, Øyvind
Bryhni, Helge Thomas
Hoppmann, Mario
Demchev, Denis
Korosov, Anton
Johansson, Malin
Eltoft, Torbørn
Dagestad, Knut-Frode
Röhrs, Johannes
Eriksson, Leif
Moro, Marina Durán
Rikardsen, Edel SU
Waseda, Takuji
Kodaira, Tsubasa
Lohse, Johannes
Desjonquères, Thibault
Olsen, Sveinung
Gundersen, Olav
de Aguiar, Victor Cesar Martins
Karlsen, Truls
Babanin, Alexander
Voermans, Joey
Park, Jeong-Won
Müller, Malte
author_sort Rabault, Jean
collection Alfred Wegener Institute for Polar- and Marine Research (AWI): ePIC (electronic Publication Information Center)
container_issue 1
container_title Scientific Data
container_volume 11
description Sea ice is a key element of the global Earth system, with a major impact on global climate and regional weather. Unfortunately, accurate sea ice modeling is challenging due to the diversity and complexity of underlying physics happening there, and a relative lack of ground truth observations. This is especially true for the Marginal Ice Zone (MIZ), which is the area where sea ice is affected by incoming ocean waves. Waves contribute to making the area dynamic, and due to the low survival time of the buoys deployed there, the MIZ is challenging to monitor. In 2022-2023, we released 79 OpenMetBuoys (OMBs) around Svalbard, both in the MIZ and the ocean immediately outside of it. OMBs are affordable enough to be deployed in large number, and gather information about drift (GNSS position) and waves (1-dimensional elevation spectrum). This provides data focusing on the area around Svalbard with unprecedented spatial and temporal resolution. We expect that this will allow to perform validation and calibration of ice models and remote sensing algorithms.
format Article in Journal/Newspaper
genre Sea ice
Svalbard
genre_facet Sea ice
Svalbard
geographic Svalbard
geographic_facet Svalbard
id ftawi:oai:epic.awi.de:59910
institution Open Polar
language unknown
op_collection_id ftawi
op_doi https://doi.org/10.1038/s41597-024-04281-1
op_relation https://epic.awi.de/id/eprint/59910/1/A%20position%20and%20wave%20spectra%20dataset%20of%20Marginal%20Ice%20Zone%20dynamics%20collected%20around%20Svalbard%20in%202022%20and%202023.pdf
Rabault, J. , Taelman, C. , Idžanović, M. , Hope, G. , Nose, T. , Kristoffersen, Y. , Jensen, A. , Breivik, Ø. , Bryhni, H. T. , Hoppmann, M. , Demchev, D. , Korosov, A. , Johansson, M. , Eltoft, T. , Dagestad, K. F. , Röhrs, J. , Eriksson, L. , Moro, M. D. , Rikardsen, E. S. , Waseda, T. , Kodaira, T. , Lohse, J. , Desjonquères, T. , Olsen, S. , Gundersen, O. , de Aguiar, V. C. M. , Karlsen, T. , Babanin, A. , Voermans, J. , Park, J. W. and Müller, M. (2024) A position and wave spectra dataset of Marginal Ice Zone dynamics collected around Svalbard in 2022 and 2023 , Scientific Data, 11 (1), p. 1417 . doi:10.1038/s41597-024-04281-1 <https://doi.org/10.1038/s41597-024-04281-1> , hdl:10013/epic.44306c1f-bfc8-4d22-ab7a-377a4062f72e
op_source EPIC3Scientific Data, Springer Nature, 11(1), pp. 1417-1417, ISSN: 2052-4463
publishDate 2024
publisher Springer Nature
record_format openpolar
spelling ftawi:oai:epic.awi.de:59910 2025-06-08T14:07:00+00:00 A position and wave spectra dataset of Marginal Ice Zone dynamics collected around Svalbard in 2022 and 2023 Rabault, Jean Taelman, Catherine Idžanović, Martina Hope, Gaute Nose, Takehiko Kristoffersen, Yngve Jensen, Atle Breivik, Øyvind Bryhni, Helge Thomas Hoppmann, Mario Demchev, Denis Korosov, Anton Johansson, Malin Eltoft, Torbørn Dagestad, Knut-Frode Röhrs, Johannes Eriksson, Leif Moro, Marina Durán Rikardsen, Edel SU Waseda, Takuji Kodaira, Tsubasa Lohse, Johannes Desjonquères, Thibault Olsen, Sveinung Gundersen, Olav de Aguiar, Victor Cesar Martins Karlsen, Truls Babanin, Alexander Voermans, Joey Park, Jeong-Won Müller, Malte 2024-12-21 application/pdf https://epic.awi.de/id/eprint/59910/ https://epic.awi.de/id/eprint/59910/1/A%20position%20and%20wave%20spectra%20dataset%20of%20Marginal%20Ice%20Zone%20dynamics%20collected%20around%20Svalbard%20in%202022%20and%202023.pdf https://doi.org/10.1038/s41597-024-04281-1 https://hdl.handle.net/10013/epic.44306c1f-bfc8-4d22-ab7a-377a4062f72e unknown Springer Nature https://epic.awi.de/id/eprint/59910/1/A%20position%20and%20wave%20spectra%20dataset%20of%20Marginal%20Ice%20Zone%20dynamics%20collected%20around%20Svalbard%20in%202022%20and%202023.pdf Rabault, J. , Taelman, C. , Idžanović, M. , Hope, G. , Nose, T. , Kristoffersen, Y. , Jensen, A. , Breivik, Ø. , Bryhni, H. T. , Hoppmann, M. , Demchev, D. , Korosov, A. , Johansson, M. , Eltoft, T. , Dagestad, K. F. , Röhrs, J. , Eriksson, L. , Moro, M. D. , Rikardsen, E. S. , Waseda, T. , Kodaira, T. , Lohse, J. , Desjonquères, T. , Olsen, S. , Gundersen, O. , de Aguiar, V. C. M. , Karlsen, T. , Babanin, A. , Voermans, J. , Park, J. W. and Müller, M. (2024) A position and wave spectra dataset of Marginal Ice Zone dynamics collected around Svalbard in 2022 and 2023 , Scientific Data, 11 (1), p. 1417 . doi:10.1038/s41597-024-04281-1 <https://doi.org/10.1038/s41597-024-04281-1> , hdl:10013/epic.44306c1f-bfc8-4d22-ab7a-377a4062f72e EPIC3Scientific Data, Springer Nature, 11(1), pp. 1417-1417, ISSN: 2052-4463 Article peerRev 2024 ftawi https://doi.org/10.1038/s41597-024-04281-1 2025-05-12T03:46:38Z Sea ice is a key element of the global Earth system, with a major impact on global climate and regional weather. Unfortunately, accurate sea ice modeling is challenging due to the diversity and complexity of underlying physics happening there, and a relative lack of ground truth observations. This is especially true for the Marginal Ice Zone (MIZ), which is the area where sea ice is affected by incoming ocean waves. Waves contribute to making the area dynamic, and due to the low survival time of the buoys deployed there, the MIZ is challenging to monitor. In 2022-2023, we released 79 OpenMetBuoys (OMBs) around Svalbard, both in the MIZ and the ocean immediately outside of it. OMBs are affordable enough to be deployed in large number, and gather information about drift (GNSS position) and waves (1-dimensional elevation spectrum). This provides data focusing on the area around Svalbard with unprecedented spatial and temporal resolution. We expect that this will allow to perform validation and calibration of ice models and remote sensing algorithms. Article in Journal/Newspaper Sea ice Svalbard Alfred Wegener Institute for Polar- and Marine Research (AWI): ePIC (electronic Publication Information Center) Svalbard Scientific Data 11 1
spellingShingle Rabault, Jean
Taelman, Catherine
Idžanović, Martina
Hope, Gaute
Nose, Takehiko
Kristoffersen, Yngve
Jensen, Atle
Breivik, Øyvind
Bryhni, Helge Thomas
Hoppmann, Mario
Demchev, Denis
Korosov, Anton
Johansson, Malin
Eltoft, Torbørn
Dagestad, Knut-Frode
Röhrs, Johannes
Eriksson, Leif
Moro, Marina Durán
Rikardsen, Edel SU
Waseda, Takuji
Kodaira, Tsubasa
Lohse, Johannes
Desjonquères, Thibault
Olsen, Sveinung
Gundersen, Olav
de Aguiar, Victor Cesar Martins
Karlsen, Truls
Babanin, Alexander
Voermans, Joey
Park, Jeong-Won
Müller, Malte
A position and wave spectra dataset of Marginal Ice Zone dynamics collected around Svalbard in 2022 and 2023
title A position and wave spectra dataset of Marginal Ice Zone dynamics collected around Svalbard in 2022 and 2023
title_full A position and wave spectra dataset of Marginal Ice Zone dynamics collected around Svalbard in 2022 and 2023
title_fullStr A position and wave spectra dataset of Marginal Ice Zone dynamics collected around Svalbard in 2022 and 2023
title_full_unstemmed A position and wave spectra dataset of Marginal Ice Zone dynamics collected around Svalbard in 2022 and 2023
title_short A position and wave spectra dataset of Marginal Ice Zone dynamics collected around Svalbard in 2022 and 2023
title_sort position and wave spectra dataset of marginal ice zone dynamics collected around svalbard in 2022 and 2023
url https://epic.awi.de/id/eprint/59910/
https://epic.awi.de/id/eprint/59910/1/A%20position%20and%20wave%20spectra%20dataset%20of%20Marginal%20Ice%20Zone%20dynamics%20collected%20around%20Svalbard%20in%202022%20and%202023.pdf
https://doi.org/10.1038/s41597-024-04281-1
https://hdl.handle.net/10013/epic.44306c1f-bfc8-4d22-ab7a-377a4062f72e