Wave attenuation by sea ice in the Arctic marginal ice zone observed by spaceborne SAR
Attenuation of ocean waves by ice is a crucial process of the interaction between waves and sea ice in marginal ice zone (MIZ), while such interaction can contribute to the retreating of sea ice in the Arctic. Based on the retrieved two-dimensional ocean wave spectra by spaceborne SAR, we investigat...
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2023
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Online Access: | http://dx.doi.org/10.22541/essoar.168748364.45930583/v1 |
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crwinnower:10.22541/essoar.168748364.45930583/v1 2024-06-02T08:01:03+00:00 Wave attenuation by sea ice in the Arctic marginal ice zone observed by spaceborne SAR Huang, Bingqing Li, Xiaoming 2023 http://dx.doi.org/10.22541/essoar.168748364.45930583/v1 unknown Authorea, Inc. https://creativecommons.org/licenses/by/4.0/ posted-content 2023 crwinnower https://doi.org/10.22541/essoar.168748364.45930583/v1 2024-05-07T14:19:16Z Attenuation of ocean waves by ice is a crucial process of the interaction between waves and sea ice in marginal ice zone (MIZ), while such interaction can contribute to the retreating of sea ice in the Arctic. Based on the retrieved two-dimensional ocean wave spectra by spaceborne SAR, we investigated the attenuation of ocean waves in the MIZ in Svalbard and Greenland. The results show that the energy attenuation rate ranges from /m to /m . Quantitative analysis suggests that the attenuation rate is significantly related to wave height and peak wave period of coming waves. It is further found that the waves decay faster in the area with ice thickness exceeding 0.5 m. We compared the derived wave attenuation rates in the present study with those in previous studies based on in situ measurements, which reveals that waves are becoming less attenuated by sea ice in the Arctic in recent decades. Other/Unknown Material Arctic Greenland Sea ice Svalbard The Winnower Arctic Greenland Svalbard |
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Open Polar |
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The Winnower |
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crwinnower |
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description |
Attenuation of ocean waves by ice is a crucial process of the interaction between waves and sea ice in marginal ice zone (MIZ), while such interaction can contribute to the retreating of sea ice in the Arctic. Based on the retrieved two-dimensional ocean wave spectra by spaceborne SAR, we investigated the attenuation of ocean waves in the MIZ in Svalbard and Greenland. The results show that the energy attenuation rate ranges from /m to /m . Quantitative analysis suggests that the attenuation rate is significantly related to wave height and peak wave period of coming waves. It is further found that the waves decay faster in the area with ice thickness exceeding 0.5 m. We compared the derived wave attenuation rates in the present study with those in previous studies based on in situ measurements, which reveals that waves are becoming less attenuated by sea ice in the Arctic in recent decades. |
format |
Other/Unknown Material |
author |
Huang, Bingqing Li, Xiaoming |
spellingShingle |
Huang, Bingqing Li, Xiaoming Wave attenuation by sea ice in the Arctic marginal ice zone observed by spaceborne SAR |
author_facet |
Huang, Bingqing Li, Xiaoming |
author_sort |
Huang, Bingqing |
title |
Wave attenuation by sea ice in the Arctic marginal ice zone observed by spaceborne SAR |
title_short |
Wave attenuation by sea ice in the Arctic marginal ice zone observed by spaceborne SAR |
title_full |
Wave attenuation by sea ice in the Arctic marginal ice zone observed by spaceborne SAR |
title_fullStr |
Wave attenuation by sea ice in the Arctic marginal ice zone observed by spaceborne SAR |
title_full_unstemmed |
Wave attenuation by sea ice in the Arctic marginal ice zone observed by spaceborne SAR |
title_sort |
wave attenuation by sea ice in the arctic marginal ice zone observed by spaceborne sar |
publisher |
Authorea, Inc. |
publishDate |
2023 |
url |
http://dx.doi.org/10.22541/essoar.168748364.45930583/v1 |
geographic |
Arctic Greenland Svalbard |
geographic_facet |
Arctic Greenland Svalbard |
genre |
Arctic Greenland Sea ice Svalbard |
genre_facet |
Arctic Greenland Sea ice Svalbard |
op_rights |
https://creativecommons.org/licenses/by/4.0/ |
op_doi |
https://doi.org/10.22541/essoar.168748364.45930583/v1 |
_version_ |
1800745298034688000 |