Ground Temperature at The Henryk Arctowski Station (King George Island, Antarctic) – Case Study from the Period January 2012 to February 2013

Abstract The article presents the results of measurements of ground temperature in the context of general meteorological conditions at the Henryk Arctowski Station (King George Island, South Shetland Islands, Antarctic) from the period of 20 January 2013 to 22 February 2013. The measurements were ta...

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Published in:Bulletin of Geography. Physical Geography Series
Main Authors: Araźny, Andrzej, Kejna, Marek, Sobota, Ireneusz
Format: Article in Journal/Newspaper
Language:unknown
Published: Walter de Gruyter GmbH 2013
Subjects:
Online Access:http://dx.doi.org/10.2478/bgeo-2013-0004
http://content.sciendo.com/view/journals/bgeo/6/1/article-p59.xml
https://www.degruyter.com/view/j/bgeo.2013.6.issue-1/bgeo-2013-0004/bgeo-2013-0004.pdf
id crdegruyter:10.2478/bgeo-2013-0004
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spelling crdegruyter:10.2478/bgeo-2013-0004 2023-05-15T14:09:43+02:00 Ground Temperature at The Henryk Arctowski Station (King George Island, Antarctic) – Case Study from the Period January 2012 to February 2013 Araźny, Andrzej Kejna, Marek Sobota, Ireneusz 2013 http://dx.doi.org/10.2478/bgeo-2013-0004 http://content.sciendo.com/view/journals/bgeo/6/1/article-p59.xml https://www.degruyter.com/view/j/bgeo.2013.6.issue-1/bgeo-2013-0004/bgeo-2013-0004.pdf unknown Walter de Gruyter GmbH Bulletin of Geography. Physical Geography Series volume 6, issue 1, page 59-80 ISSN 2080-7686 Geophysics Geography, Planning and Development journal-article 2013 crdegruyter https://doi.org/10.2478/bgeo-2013-0004 2022-04-14T05:07:12Z Abstract The article presents the results of measurements of ground temperature in the context of general meteorological conditions at the Henryk Arctowski Station (King George Island, South Shetland Islands, Antarctic) from the period of 20 January 2013 to 22 February 2013. The measurements were taken using a Vantage Pro+ automatic weather station and the thermal conditions of the ground were measured by means of a HOBO automatic data logger. The variability of ground temperature was analysed in an annual and diurnal cycle. A clear recurrent diurnal pattern was observed in the summer season, resulting from more favourable insolation conditions in that part of the year. In the winter, on the other hand, no major differences in the diurnal cycle of ground temperature were found, particularly with a dense snow cover. Article in Journal/Newspaper Antarc* Antarctic King George Island South Shetland Islands De Gruyter (via Crossref) Antarctic King George Island South Shetland Islands Arctowski ENVELOPE(-58.467,-58.467,-62.167,-62.167) Arctowski Station ENVELOPE(-58.482,-58.482,-62.153,-62.153) Bulletin of Geography. Physical Geography Series 6 1 59 80
institution Open Polar
collection De Gruyter (via Crossref)
op_collection_id crdegruyter
language unknown
topic Geophysics
Geography, Planning and Development
spellingShingle Geophysics
Geography, Planning and Development
Araźny, Andrzej
Kejna, Marek
Sobota, Ireneusz
Ground Temperature at The Henryk Arctowski Station (King George Island, Antarctic) – Case Study from the Period January 2012 to February 2013
topic_facet Geophysics
Geography, Planning and Development
description Abstract The article presents the results of measurements of ground temperature in the context of general meteorological conditions at the Henryk Arctowski Station (King George Island, South Shetland Islands, Antarctic) from the period of 20 January 2013 to 22 February 2013. The measurements were taken using a Vantage Pro+ automatic weather station and the thermal conditions of the ground were measured by means of a HOBO automatic data logger. The variability of ground temperature was analysed in an annual and diurnal cycle. A clear recurrent diurnal pattern was observed in the summer season, resulting from more favourable insolation conditions in that part of the year. In the winter, on the other hand, no major differences in the diurnal cycle of ground temperature were found, particularly with a dense snow cover.
format Article in Journal/Newspaper
author Araźny, Andrzej
Kejna, Marek
Sobota, Ireneusz
author_facet Araźny, Andrzej
Kejna, Marek
Sobota, Ireneusz
author_sort Araźny, Andrzej
title Ground Temperature at The Henryk Arctowski Station (King George Island, Antarctic) – Case Study from the Period January 2012 to February 2013
title_short Ground Temperature at The Henryk Arctowski Station (King George Island, Antarctic) – Case Study from the Period January 2012 to February 2013
title_full Ground Temperature at The Henryk Arctowski Station (King George Island, Antarctic) – Case Study from the Period January 2012 to February 2013
title_fullStr Ground Temperature at The Henryk Arctowski Station (King George Island, Antarctic) – Case Study from the Period January 2012 to February 2013
title_full_unstemmed Ground Temperature at The Henryk Arctowski Station (King George Island, Antarctic) – Case Study from the Period January 2012 to February 2013
title_sort ground temperature at the henryk arctowski station (king george island, antarctic) – case study from the period january 2012 to february 2013
publisher Walter de Gruyter GmbH
publishDate 2013
url http://dx.doi.org/10.2478/bgeo-2013-0004
http://content.sciendo.com/view/journals/bgeo/6/1/article-p59.xml
https://www.degruyter.com/view/j/bgeo.2013.6.issue-1/bgeo-2013-0004/bgeo-2013-0004.pdf
long_lat ENVELOPE(-58.467,-58.467,-62.167,-62.167)
ENVELOPE(-58.482,-58.482,-62.153,-62.153)
geographic Antarctic
King George Island
South Shetland Islands
Arctowski
Arctowski Station
geographic_facet Antarctic
King George Island
South Shetland Islands
Arctowski
Arctowski Station
genre Antarc*
Antarctic
King George Island
South Shetland Islands
genre_facet Antarc*
Antarctic
King George Island
South Shetland Islands
op_source Bulletin of Geography. Physical Geography Series
volume 6, issue 1, page 59-80
ISSN 2080-7686
op_doi https://doi.org/10.2478/bgeo-2013-0004
container_title Bulletin of Geography. Physical Geography Series
container_volume 6
container_issue 1
container_start_page 59
op_container_end_page 80
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