Atmosphere and ocean measurements from an Automated Weather Station on landfast sea ice in Wolstenholme Fjord, Greenland, March - April 2017

The principal investigators of this project propose to design and develop an integrated underwater acoustic sensor network for ice-covered seas. The sensor and communication network will support 1) long-term, intelligent distributed Arctic observing systems, 2) assimilation of remote-sensing and in-...

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Main Author: Andreas Muenchow
Format: Dataset
Language:unknown
Published: Arctic Data Center 2019
Subjects:
Online Access:https://search.dataone.org/view/urn:uuid:025102ad-3ac2-4a03-a2af-1eb9da76909f
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spelling dataone:urn:uuid:025102ad-3ac2-4a03-a2af-1eb9da76909f 2024-06-03T18:46:41+00:00 Atmosphere and ocean measurements from an Automated Weather Station on landfast sea ice in Wolstenholme Fjord, Greenland, March - April 2017 Andreas Muenchow Wolstenholme Fjord, Greenland ENVELOPE(-69.35175,-69.35175,76.62428,76.62428) BEGINDATE: 2017-03-24T00:00:00Z ENDDATE: 2017-04-18T00:00:00Z 2019-03-31T00:00:00Z https://search.dataone.org/view/urn:uuid:025102ad-3ac2-4a03-a2af-1eb9da76909f unknown Arctic Data Center Physical Oceanography Dataset 2019 dataone:urn:node:ARCTIC 2024-06-03T18:12:03Z The principal investigators of this project propose to design and develop an integrated underwater acoustic sensor network for ice-covered seas. The sensor and communication network will support 1) long-term, intelligent distributed Arctic observing systems, 2) assimilation of remote-sensing and in-situ under-ice measurements, and 3) regional and global climate modeling with real-time measurements. Such a network holds the promise to revolutionize under-ice ocean sampling in polar regions. An automated weather station (AWS) was placed Mar.-23, 2017 on the sea ice at 76° 37.463’ North and 69° 21.077’ West. It reported wind, air, and surface ocean temperature and conductivity at the center of the sea ice study area via an Iridium satellite link every 30 minutes. This operational capability mitigates the risks of working away from Thule Air Base where local topography other than sea ice dominates atmospheric flows. Nevertheless, scientific goals were met such as acquisition of a time series of atmospheric and ocean conditions (via a cabled sensor). The AWS also served as the terminus for the acoustic receive modem whose data cable connects to the AWS after April-15, 2017. Dataset Arctic Greenland Sea ice Thule Air Thule Air Base Thule Wolstenholme fjord Arctic Data Center (via DataONE) Arctic Greenland Thule Air Base ENVELOPE(-68.703,-68.703,76.531,76.531) Wolstenholme Fjord ENVELOPE(-68.650,-68.650,76.628,76.628) ENVELOPE(-69.35175,-69.35175,76.62428,76.62428)
institution Open Polar
collection Arctic Data Center (via DataONE)
op_collection_id dataone:urn:node:ARCTIC
language unknown
topic Physical Oceanography
spellingShingle Physical Oceanography
Andreas Muenchow
Atmosphere and ocean measurements from an Automated Weather Station on landfast sea ice in Wolstenholme Fjord, Greenland, March - April 2017
topic_facet Physical Oceanography
description The principal investigators of this project propose to design and develop an integrated underwater acoustic sensor network for ice-covered seas. The sensor and communication network will support 1) long-term, intelligent distributed Arctic observing systems, 2) assimilation of remote-sensing and in-situ under-ice measurements, and 3) regional and global climate modeling with real-time measurements. Such a network holds the promise to revolutionize under-ice ocean sampling in polar regions. An automated weather station (AWS) was placed Mar.-23, 2017 on the sea ice at 76° 37.463’ North and 69° 21.077’ West. It reported wind, air, and surface ocean temperature and conductivity at the center of the sea ice study area via an Iridium satellite link every 30 minutes. This operational capability mitigates the risks of working away from Thule Air Base where local topography other than sea ice dominates atmospheric flows. Nevertheless, scientific goals were met such as acquisition of a time series of atmospheric and ocean conditions (via a cabled sensor). The AWS also served as the terminus for the acoustic receive modem whose data cable connects to the AWS after April-15, 2017.
format Dataset
author Andreas Muenchow
author_facet Andreas Muenchow
author_sort Andreas Muenchow
title Atmosphere and ocean measurements from an Automated Weather Station on landfast sea ice in Wolstenholme Fjord, Greenland, March - April 2017
title_short Atmosphere and ocean measurements from an Automated Weather Station on landfast sea ice in Wolstenholme Fjord, Greenland, March - April 2017
title_full Atmosphere and ocean measurements from an Automated Weather Station on landfast sea ice in Wolstenholme Fjord, Greenland, March - April 2017
title_fullStr Atmosphere and ocean measurements from an Automated Weather Station on landfast sea ice in Wolstenholme Fjord, Greenland, March - April 2017
title_full_unstemmed Atmosphere and ocean measurements from an Automated Weather Station on landfast sea ice in Wolstenholme Fjord, Greenland, March - April 2017
title_sort atmosphere and ocean measurements from an automated weather station on landfast sea ice in wolstenholme fjord, greenland, march - april 2017
publisher Arctic Data Center
publishDate 2019
url https://search.dataone.org/view/urn:uuid:025102ad-3ac2-4a03-a2af-1eb9da76909f
op_coverage Wolstenholme Fjord, Greenland
ENVELOPE(-69.35175,-69.35175,76.62428,76.62428)
BEGINDATE: 2017-03-24T00:00:00Z ENDDATE: 2017-04-18T00:00:00Z
long_lat ENVELOPE(-68.703,-68.703,76.531,76.531)
ENVELOPE(-68.650,-68.650,76.628,76.628)
ENVELOPE(-69.35175,-69.35175,76.62428,76.62428)
geographic Arctic
Greenland
Thule Air Base
Wolstenholme Fjord
geographic_facet Arctic
Greenland
Thule Air Base
Wolstenholme Fjord
genre Arctic
Greenland
Sea ice
Thule Air
Thule Air Base
Thule
Wolstenholme fjord
genre_facet Arctic
Greenland
Sea ice
Thule Air
Thule Air Base
Thule
Wolstenholme fjord
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