Shelfbreak Upwelling in the Western Beaufort Sea, Zooplankton Abundance data, August 2018.
Atmospherically-forced wind-induced upwelling along the shelf break leads to enhanced feeding opportunities for intermediate links in the pelagic ecosystem that in turn sustain the exploitation of this environment by animals such as beluga, seabirds, and seals. The Beaufort Sea shelf break is a hots...
Main Authors: | , , |
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Format: | Dataset |
Language: | unknown |
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Arctic Data Center
2022
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Online Access: | https://search.dataone.org/view/urn:uuid:ad702c3d-dc14-45a3-adfe-df824d4e3698 |
_version_ | 1833937693825826816 |
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author | Celia Gelfman Robert Campbell Carin Ashjian |
author_facet | Celia Gelfman Robert Campbell Carin Ashjian |
author_sort | Celia Gelfman |
collection | Arctic Data Center (via DataONE) |
description | Atmospherically-forced wind-induced upwelling along the shelf break leads to enhanced feeding opportunities for intermediate links in the pelagic ecosystem that in turn sustain the exploitation of this environment by animals such as beluga, seabirds, and seals. The Beaufort Sea shelf break is a hotspot for upper trophic level animals because elevated numbers and biomass of large, high-energy zooplankton (e.g., lipid-rich copepods, euphausiids) are regularly upwelled from deeper water onto the shelf during winds from the east, retained there by frontal features when upwelling relaxes, and exploited by bowhead whales, seabirds, and forage fish that in turn are prey for piscivorous marine mammals, such as beluga whales. The zooplankton abundance data were collected to measure upwelling impacts to the Beaufort shelf break community structure. Data were acquired as part of the National Science Foundation (NSF)-funded project "The Importance of Shelf Break Upwelling to Upper Trophic Level Ecology in the Western Beaufort Sea". Data from net tows within the box 165 West (W) - 145 W, 69 North (N) - 72N between 8 and 23 August 2018. |
format | Dataset |
genre | Beaufort Sea Beluga Beluga* Calanus glacialis Calanus hyperboreus Thysanoessa raschii Copepods Thysanoessa inermis |
genre_facet | Beaufort Sea Beluga Beluga* Calanus glacialis Calanus hyperboreus Thysanoessa raschii Copepods Thysanoessa inermis |
geographic | Beaufort Shelf |
geographic_facet | Beaufort Shelf |
id | dataone:urn:uuid:ad702c3d-dc14-45a3-adfe-df824d4e3698 |
institution | Open Polar |
language | unknown |
long_lat | ENVELOPE(-142.500,-142.500,70.000,70.000) ENVELOPE(-165.0,-145.0,72.0,69.0) |
op_collection_id | dataone:urn:node:ARCTIC |
op_coverage | Western Beaufort Sea ENVELOPE(-165.0,-145.0,72.0,69.0) BEGINDATE: 2018-08-08T00:00:00Z ENDDATE: 2018-08-23T00:00:00Z |
publishDate | 2022 |
publisher | Arctic Data Center |
record_format | openpolar |
spelling | dataone:urn:uuid:ad702c3d-dc14-45a3-adfe-df824d4e3698 2025-06-03T18:49:38+00:00 Shelfbreak Upwelling in the Western Beaufort Sea, Zooplankton Abundance data, August 2018. Celia Gelfman Robert Campbell Carin Ashjian Western Beaufort Sea ENVELOPE(-165.0,-145.0,72.0,69.0) BEGINDATE: 2018-08-08T00:00:00Z ENDDATE: 2018-08-23T00:00:00Z 2022-01-01T00:00:00Z https://search.dataone.org/view/urn:uuid:ad702c3d-dc14-45a3-adfe-df824d4e3698 unknown Arctic Data Center zooplankton copepod euphausiid abundance Calanus glacialis/marshallae Calanus hyperboreus Metridia longa Thysanoessa raschii Thysanoessa inermis Dataset 2022 dataone:urn:node:ARCTIC 2025-06-03T18:18:19Z Atmospherically-forced wind-induced upwelling along the shelf break leads to enhanced feeding opportunities for intermediate links in the pelagic ecosystem that in turn sustain the exploitation of this environment by animals such as beluga, seabirds, and seals. The Beaufort Sea shelf break is a hotspot for upper trophic level animals because elevated numbers and biomass of large, high-energy zooplankton (e.g., lipid-rich copepods, euphausiids) are regularly upwelled from deeper water onto the shelf during winds from the east, retained there by frontal features when upwelling relaxes, and exploited by bowhead whales, seabirds, and forage fish that in turn are prey for piscivorous marine mammals, such as beluga whales. The zooplankton abundance data were collected to measure upwelling impacts to the Beaufort shelf break community structure. Data were acquired as part of the National Science Foundation (NSF)-funded project "The Importance of Shelf Break Upwelling to Upper Trophic Level Ecology in the Western Beaufort Sea". Data from net tows within the box 165 West (W) - 145 W, 69 North (N) - 72N between 8 and 23 August 2018. Dataset Beaufort Sea Beluga Beluga* Calanus glacialis Calanus hyperboreus Thysanoessa raschii Copepods Thysanoessa inermis Arctic Data Center (via DataONE) Beaufort Shelf ENVELOPE(-142.500,-142.500,70.000,70.000) ENVELOPE(-165.0,-145.0,72.0,69.0) |
spellingShingle | zooplankton copepod euphausiid abundance Calanus glacialis/marshallae Calanus hyperboreus Metridia longa Thysanoessa raschii Thysanoessa inermis Celia Gelfman Robert Campbell Carin Ashjian Shelfbreak Upwelling in the Western Beaufort Sea, Zooplankton Abundance data, August 2018. |
title | Shelfbreak Upwelling in the Western Beaufort Sea, Zooplankton Abundance data, August 2018. |
title_full | Shelfbreak Upwelling in the Western Beaufort Sea, Zooplankton Abundance data, August 2018. |
title_fullStr | Shelfbreak Upwelling in the Western Beaufort Sea, Zooplankton Abundance data, August 2018. |
title_full_unstemmed | Shelfbreak Upwelling in the Western Beaufort Sea, Zooplankton Abundance data, August 2018. |
title_short | Shelfbreak Upwelling in the Western Beaufort Sea, Zooplankton Abundance data, August 2018. |
title_sort | shelfbreak upwelling in the western beaufort sea, zooplankton abundance data, august 2018. |
topic | zooplankton copepod euphausiid abundance Calanus glacialis/marshallae Calanus hyperboreus Metridia longa Thysanoessa raschii Thysanoessa inermis |
topic_facet | zooplankton copepod euphausiid abundance Calanus glacialis/marshallae Calanus hyperboreus Metridia longa Thysanoessa raschii Thysanoessa inermis |
url | https://search.dataone.org/view/urn:uuid:ad702c3d-dc14-45a3-adfe-df824d4e3698 |