Formation of an ice dam in the lower reaches of the Mezen and Kuloy rivers from 1983 to 2020 (the White Sea basin)
The features of ice cover formation within the macro-tidal estuaries of the Mezen River and the Kuloy River are considered. The investigated rivers flow into the Mezen Bay of the White Sea. The main sources of information for the ice monitoring were the high spatial resolution images from the satell...
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Language: | Russian |
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Nauka
2021
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Online Access: | https://doi.org/10.31857/S2076673421030100 https://doaj.org/article/89712f55da63420c974f041250b2b440 |
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ftdoajarticles:oai:doaj.org/article:89712f55da63420c974f041250b2b440 2023-05-15T17:12:22+02:00 Formation of an ice dam in the lower reaches of the Mezen and Kuloy rivers from 1983 to 2020 (the White Sea basin) S. A. Agafonova P. G. Mikhaylyukova V. M. Koliy 2021-09-01T00:00:00Z https://doi.org/10.31857/S2076673421030100 https://doaj.org/article/89712f55da63420c974f041250b2b440 RU rus Nauka https://ice-snow.igras.ru/jour/article/view/917 https://doaj.org/toc/2076-6734 https://doaj.org/toc/2412-3765 2076-6734 2412-3765 doi:10.31857/S2076673421030100 https://doaj.org/article/89712f55da63420c974f041250b2b440 Лëд и снег, Vol 61, Iss 3, Pp 445-456 (2021) ледяной покров макроприливные устья космические снимки реки мезень и кулой Science Q article 2021 ftdoajarticles https://doi.org/10.31857/S2076673421030100 2023-03-19T01:40:11Z The features of ice cover formation within the macro-tidal estuaries of the Mezen River and the Kuloy River are considered. The investigated rivers flow into the Mezen Bay of the White Sea. The main sources of information for the ice monitoring were the high spatial resolution images from the satellites Landsat 5‑8 and Sentinel 1.2 with addition of medium spatial resolution images of MODIS/Terra and VIIRS/SuomiNPP. Every year, zones of continuous hummocks and ice dams are formed in the estuaries, which exert influence upon characteristics of the tidal waves. The fast ice and drifting ice areas are observed below the ice dam. Above the dam, amplitude the tidal fluctuations in the water level is reduced by 3–4 times. According to the data for the period 2017–2020, the area of relatively smooth ice cover is located at the distance of 48–49 km above the mouth of the Mezen River and 40–42 km above the same of the Kuloy River. Advancing of the ice edge to the mouth is accompanied by the formation of hummocky ice bridges, the position of which is confined to the narrowing and sharp turns of the channel. According to satellite images, it is established that the ice dam changes its position from year to year. In the period from 1983 to 2020, on the Mezen River, the ice dam was located at a distance of 21.0 to 30.5 km from the mouth, and on the Kuloy – from 13.7 to 27.5 km above the mouth. The position of the ice dam is weather dependent. In severe winters, the dam is located closer to the mouth gauge line. Snow, falling in November and December on areas of open water, delays advancing of the ice edge to the mouth. For Mezen, the relation between the position of the ice dam and three following predictors had been obtained: the sum of precipitation for November and December at the air temperature below –5 °C, the sum of air temperatures below –5 °C for January and March, and the sum of positive air temperatures for February. The proposed dependence made it possible to restore the positions of the ice dam for the years ... Article in Journal/Newspaper Mezen Bay White Sea Мезень Directory of Open Access Journals: DOAJ Articles White Sea Kuloy ENVELOPE(43.383,43.383,66.097,66.097) Ice and Snow 61 3 445 456 |
institution |
Open Polar |
collection |
Directory of Open Access Journals: DOAJ Articles |
op_collection_id |
ftdoajarticles |
language |
Russian |
topic |
ледяной покров макроприливные устья космические снимки реки мезень и кулой Science Q |
spellingShingle |
ледяной покров макроприливные устья космические снимки реки мезень и кулой Science Q S. A. Agafonova P. G. Mikhaylyukova V. M. Koliy Formation of an ice dam in the lower reaches of the Mezen and Kuloy rivers from 1983 to 2020 (the White Sea basin) |
topic_facet |
ледяной покров макроприливные устья космические снимки реки мезень и кулой Science Q |
description |
The features of ice cover formation within the macro-tidal estuaries of the Mezen River and the Kuloy River are considered. The investigated rivers flow into the Mezen Bay of the White Sea. The main sources of information for the ice monitoring were the high spatial resolution images from the satellites Landsat 5‑8 and Sentinel 1.2 with addition of medium spatial resolution images of MODIS/Terra and VIIRS/SuomiNPP. Every year, zones of continuous hummocks and ice dams are formed in the estuaries, which exert influence upon characteristics of the tidal waves. The fast ice and drifting ice areas are observed below the ice dam. Above the dam, amplitude the tidal fluctuations in the water level is reduced by 3–4 times. According to the data for the period 2017–2020, the area of relatively smooth ice cover is located at the distance of 48–49 km above the mouth of the Mezen River and 40–42 km above the same of the Kuloy River. Advancing of the ice edge to the mouth is accompanied by the formation of hummocky ice bridges, the position of which is confined to the narrowing and sharp turns of the channel. According to satellite images, it is established that the ice dam changes its position from year to year. In the period from 1983 to 2020, on the Mezen River, the ice dam was located at a distance of 21.0 to 30.5 km from the mouth, and on the Kuloy – from 13.7 to 27.5 km above the mouth. The position of the ice dam is weather dependent. In severe winters, the dam is located closer to the mouth gauge line. Snow, falling in November and December on areas of open water, delays advancing of the ice edge to the mouth. For Mezen, the relation between the position of the ice dam and three following predictors had been obtained: the sum of precipitation for November and December at the air temperature below –5 °C, the sum of air temperatures below –5 °C for January and March, and the sum of positive air temperatures for February. The proposed dependence made it possible to restore the positions of the ice dam for the years ... |
format |
Article in Journal/Newspaper |
author |
S. A. Agafonova P. G. Mikhaylyukova V. M. Koliy |
author_facet |
S. A. Agafonova P. G. Mikhaylyukova V. M. Koliy |
author_sort |
S. A. Agafonova |
title |
Formation of an ice dam in the lower reaches of the Mezen and Kuloy rivers from 1983 to 2020 (the White Sea basin) |
title_short |
Formation of an ice dam in the lower reaches of the Mezen and Kuloy rivers from 1983 to 2020 (the White Sea basin) |
title_full |
Formation of an ice dam in the lower reaches of the Mezen and Kuloy rivers from 1983 to 2020 (the White Sea basin) |
title_fullStr |
Formation of an ice dam in the lower reaches of the Mezen and Kuloy rivers from 1983 to 2020 (the White Sea basin) |
title_full_unstemmed |
Formation of an ice dam in the lower reaches of the Mezen and Kuloy rivers from 1983 to 2020 (the White Sea basin) |
title_sort |
formation of an ice dam in the lower reaches of the mezen and kuloy rivers from 1983 to 2020 (the white sea basin) |
publisher |
Nauka |
publishDate |
2021 |
url |
https://doi.org/10.31857/S2076673421030100 https://doaj.org/article/89712f55da63420c974f041250b2b440 |
long_lat |
ENVELOPE(43.383,43.383,66.097,66.097) |
geographic |
White Sea Kuloy |
geographic_facet |
White Sea Kuloy |
genre |
Mezen Bay White Sea Мезень |
genre_facet |
Mezen Bay White Sea Мезень |
op_source |
Лëд и снег, Vol 61, Iss 3, Pp 445-456 (2021) |
op_relation |
https://ice-snow.igras.ru/jour/article/view/917 https://doaj.org/toc/2076-6734 https://doaj.org/toc/2412-3765 2076-6734 2412-3765 doi:10.31857/S2076673421030100 https://doaj.org/article/89712f55da63420c974f041250b2b440 |
op_doi |
https://doi.org/10.31857/S2076673421030100 |
container_title |
Ice and Snow |
container_volume |
61 |
container_issue |
3 |
container_start_page |
445 |
op_container_end_page |
456 |
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1766069166682406912 |