Runoff Variability in the Scott River (SW Spitsbergen) in Summer Seasons 2012–2013 in Comparison with the Period 1986–2009

River runoff variability in the Scott River catchment in the summer seasons 2012 and 2013 has been presented in comparison to the multiannual river runoff in 1986–2009. Both in particular seasons and in the analysed multiannual, high variability of discharge rate was recorded. In the research period...

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Published in:Quaestiones Geographicae
Main Authors: Franczak Łukasz, Kociuba Waldemar, Gajek Grzegorz
Format: Article in Journal/Newspaper
Language:English
Published: Sciendo 2016
Subjects:
Online Access:https://doi.org/10.1515/quageo-2016-0025
https://doaj.org/article/dafb1778776b4aea97320b9abc1c7d1f
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spelling ftdoajarticles:oai:doaj.org/article:dafb1778776b4aea97320b9abc1c7d1f 2023-05-15T16:22:17+02:00 Runoff Variability in the Scott River (SW Spitsbergen) in Summer Seasons 2012–2013 in Comparison with the Period 1986–2009 Franczak Łukasz Kociuba Waldemar Gajek Grzegorz 2016-09-01T00:00:00Z https://doi.org/10.1515/quageo-2016-0025 https://doaj.org/article/dafb1778776b4aea97320b9abc1c7d1f EN eng Sciendo https://doi.org/10.1515/quageo-2016-0025 https://doaj.org/toc/2081-6383 2081-6383 doi:10.1515/quageo-2016-0025 https://doaj.org/article/dafb1778776b4aea97320b9abc1c7d1f Quaestiones Geographicae, Vol 35, Iss 3, Pp 39-50 (2016) hydrology proglacial river polar region svalbard Geography (General) G1-922 article 2016 ftdoajarticles https://doi.org/10.1515/quageo-2016-0025 2022-12-31T04:34:02Z River runoff variability in the Scott River catchment in the summer seasons 2012 and 2013 has been presented in comparison to the multiannual river runoff in 1986–2009. Both in particular seasons and in the analysed multiannual, high variability of discharge rate was recorded. In the research periods 2012–2013, a total of 11 952 water stages and 20 flow rates were measured in the analysed cross-section for the determination of 83 daylong discharges. The mean multiannual discharge of the Scott River amounted to 0.96 m3·s−1. The value corresponds to a specific runoff of 94.6 dm3·s−1·km2, and the runoff layer 937 mm. The maximum values of daily discharge amounted to 5.07 m3·s−1, and the minimum values to 0.002 m3·s−1. The highest runoff occurs in the second and third decade of July, and in the first and second decade of August. The regime of the river is determined by a group of factors, and particularly meteorological conditions affecting the intensity of ablation, and consequently river runoff volume. We found a significant correlation (0.60 in 2012 and 0.67 in 2013) between the air temperature and the Scott River discharge related to the Scott Glacier ice melt. Article in Journal/Newspaper glacier Scott Glacier Svalbard Spitsbergen Directory of Open Access Journals: DOAJ Articles Svalbard Scott River ENVELOPE(-103.284,-103.284,56.267,56.267) Quaestiones Geographicae 35 3 39 50
institution Open Polar
collection Directory of Open Access Journals: DOAJ Articles
op_collection_id ftdoajarticles
language English
topic hydrology
proglacial river
polar region
svalbard
Geography (General)
G1-922
spellingShingle hydrology
proglacial river
polar region
svalbard
Geography (General)
G1-922
Franczak Łukasz
Kociuba Waldemar
Gajek Grzegorz
Runoff Variability in the Scott River (SW Spitsbergen) in Summer Seasons 2012–2013 in Comparison with the Period 1986–2009
topic_facet hydrology
proglacial river
polar region
svalbard
Geography (General)
G1-922
description River runoff variability in the Scott River catchment in the summer seasons 2012 and 2013 has been presented in comparison to the multiannual river runoff in 1986–2009. Both in particular seasons and in the analysed multiannual, high variability of discharge rate was recorded. In the research periods 2012–2013, a total of 11 952 water stages and 20 flow rates were measured in the analysed cross-section for the determination of 83 daylong discharges. The mean multiannual discharge of the Scott River amounted to 0.96 m3·s−1. The value corresponds to a specific runoff of 94.6 dm3·s−1·km2, and the runoff layer 937 mm. The maximum values of daily discharge amounted to 5.07 m3·s−1, and the minimum values to 0.002 m3·s−1. The highest runoff occurs in the second and third decade of July, and in the first and second decade of August. The regime of the river is determined by a group of factors, and particularly meteorological conditions affecting the intensity of ablation, and consequently river runoff volume. We found a significant correlation (0.60 in 2012 and 0.67 in 2013) between the air temperature and the Scott River discharge related to the Scott Glacier ice melt.
format Article in Journal/Newspaper
author Franczak Łukasz
Kociuba Waldemar
Gajek Grzegorz
author_facet Franczak Łukasz
Kociuba Waldemar
Gajek Grzegorz
author_sort Franczak Łukasz
title Runoff Variability in the Scott River (SW Spitsbergen) in Summer Seasons 2012–2013 in Comparison with the Period 1986–2009
title_short Runoff Variability in the Scott River (SW Spitsbergen) in Summer Seasons 2012–2013 in Comparison with the Period 1986–2009
title_full Runoff Variability in the Scott River (SW Spitsbergen) in Summer Seasons 2012–2013 in Comparison with the Period 1986–2009
title_fullStr Runoff Variability in the Scott River (SW Spitsbergen) in Summer Seasons 2012–2013 in Comparison with the Period 1986–2009
title_full_unstemmed Runoff Variability in the Scott River (SW Spitsbergen) in Summer Seasons 2012–2013 in Comparison with the Period 1986–2009
title_sort runoff variability in the scott river (sw spitsbergen) in summer seasons 2012–2013 in comparison with the period 1986–2009
publisher Sciendo
publishDate 2016
url https://doi.org/10.1515/quageo-2016-0025
https://doaj.org/article/dafb1778776b4aea97320b9abc1c7d1f
long_lat ENVELOPE(-103.284,-103.284,56.267,56.267)
geographic Svalbard
Scott River
geographic_facet Svalbard
Scott River
genre glacier
Scott Glacier
Svalbard
Spitsbergen
genre_facet glacier
Scott Glacier
Svalbard
Spitsbergen
op_source Quaestiones Geographicae, Vol 35, Iss 3, Pp 39-50 (2016)
op_relation https://doi.org/10.1515/quageo-2016-0025
https://doaj.org/toc/2081-6383
2081-6383
doi:10.1515/quageo-2016-0025
https://doaj.org/article/dafb1778776b4aea97320b9abc1c7d1f
op_doi https://doi.org/10.1515/quageo-2016-0025
container_title Quaestiones Geographicae
container_volume 35
container_issue 3
container_start_page 39
op_container_end_page 50
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