An OpenMetBuoy dataset of Marginal Ice Zone dynamics collected around Svalbard in 2022 and 2023

Fuente: arXiv
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Hauptverfasser: 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, Torbjørn, Dagestad, Knut-Frode, Röhrs, Johannes, Eriksson, Leif, Moro, Marina Durán, Rikardsen, Edel S. U., 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: Preprint
Veröffentlicht: 2024
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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, Torbjørn
Dagestad, Knut-Frode
Röhrs, Johannes
Eriksson, Leif
Moro, Marina Durán
Rikardsen, Edel S. U.
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, Torbjørn
Dagestad, Knut-Frode
Röhrs, Johannes
Eriksson, Leif
Moro, Marina Durán
Rikardsen, Edel S. U.
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
contents 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 (GPS 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 Preprint
id arxiv_https___arxiv_org_abs_2409_04151
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle An OpenMetBuoy 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, Torbjørn
Dagestad, Knut-Frode
Röhrs, Johannes
Eriksson, Leif
Moro, Marina Durán
Rikardsen, Edel S. U.
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
Atmospheric and Oceanic Physics
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 (GPS 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.
title An OpenMetBuoy dataset of Marginal Ice Zone dynamics collected around Svalbard in 2022 and 2023
topic Atmospheric and Oceanic Physics
url https://arxiv.org/abs/2409.04151