Impacts of hydro-climatically varying years on ice growth and decay in a subarctic river

Predicting the future changes in river ice development and impacts on seasonal sediment transport requires more in-depth examination of present river ice cover growth processes. This paper therefore investigates: (1) the impacts of hydro-climatically varying years on river ice development in a Scand...

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Published in:Water
Main Authors: Lotsari, Eliisa, Lind, Lovisa, Kämäri, Maria
Format: Article in Journal/Newspaper
Language:English
Published: MDPI 2022
Subjects:
ice
Online Access:http://hdl.handle.net/10138/341606
id ftunivhelsihelda:oai:helda.helsinki.fi:10138/341606
record_format openpolar
spelling ftunivhelsihelda:oai:helda.helsinki.fi:10138/341606 2023-08-20T04:10:02+02:00 Impacts of hydro-climatically varying years on ice growth and decay in a subarctic river Lotsari, Eliisa Lind, Lovisa Kämäri, Maria 2022-03-14T14:04:30Z application/pdf http://hdl.handle.net/10138/341606 eng eng MDPI https://doi.org/10.3390/w11102058 Water 11: 2058 2073-4441 Lotsari, E.; Lind, L.; Kämäri, M. Impacts of Hydro-Climatically Varying Years on Ice Growth and Decay in a Subarctic River. Water 2019, 11, 2058. https://doi.org/10.3390/w11102058 Suomen ympäristökeskus http://hdl.handle.net/10138/341606 CC BY 4.0 openAccess river ice processes thermal ice decay thermal ice growth freeze-thaw subarctic hydrology climate ice rivers processes freezing melting subarctic zone geosciences environmental sciences hydrologia ilmasto jää joet prosessit jäätyminen sulaminen subarktinen vyöhyke geotieteet ympäristötieteet Article 2022 ftunivhelsihelda https://doi.org/10.3390/w11102058 2023-07-28T06:20:36Z Predicting the future changes in river ice development and impacts on seasonal sediment transport requires more in-depth examination of present river ice cover growth processes. This paper therefore investigates: (1) the impacts of hydro-climatically varying years on river ice development in a Scandinavian subarctic meandering river and (2) the accuracy of existing analytical models for predicting ice thickness growth and ice decay. Stefan’s ice growth equation (version by Michel et al.) and Bilello’s ice decay equation are applied to varying hydro-climatic conditions experienced in the years 2013–2019. Estimates from these equations are compared with observed field conditions such as ice thicknesses, ice clearance dates and freeze-thaw days. Overall, the equations were most accurate in the winter of 2016–2017 when the maximum mid-winter snow thickness value was high, the number of freeze-thaw days was the closest to the long-term average of northern Scandinavia, and the rate of thermal snow-melt in the subsequent spring was slow. The equations would need to be adjusted to take into account expected future changes to conditions such as shorter winters, less snow formation and increased frequency of air temperatures crossing 0 °C. Article in Journal/Newspaper Subarctic Helsingfors Universitet: HELDA – Helsingin yliopiston digitaalinen arkisto Water 11 10 2058
institution Open Polar
collection Helsingfors Universitet: HELDA – Helsingin yliopiston digitaalinen arkisto
op_collection_id ftunivhelsihelda
language English
topic river ice processes
thermal ice decay
thermal ice growth
freeze-thaw
subarctic
hydrology
climate
ice
rivers
processes
freezing
melting
subarctic zone
geosciences
environmental sciences
hydrologia
ilmasto
jää
joet
prosessit
jäätyminen
sulaminen
subarktinen vyöhyke
geotieteet
ympäristötieteet
spellingShingle river ice processes
thermal ice decay
thermal ice growth
freeze-thaw
subarctic
hydrology
climate
ice
rivers
processes
freezing
melting
subarctic zone
geosciences
environmental sciences
hydrologia
ilmasto
jää
joet
prosessit
jäätyminen
sulaminen
subarktinen vyöhyke
geotieteet
ympäristötieteet
Lotsari, Eliisa
Lind, Lovisa
Kämäri, Maria
Impacts of hydro-climatically varying years on ice growth and decay in a subarctic river
topic_facet river ice processes
thermal ice decay
thermal ice growth
freeze-thaw
subarctic
hydrology
climate
ice
rivers
processes
freezing
melting
subarctic zone
geosciences
environmental sciences
hydrologia
ilmasto
jää
joet
prosessit
jäätyminen
sulaminen
subarktinen vyöhyke
geotieteet
ympäristötieteet
description Predicting the future changes in river ice development and impacts on seasonal sediment transport requires more in-depth examination of present river ice cover growth processes. This paper therefore investigates: (1) the impacts of hydro-climatically varying years on river ice development in a Scandinavian subarctic meandering river and (2) the accuracy of existing analytical models for predicting ice thickness growth and ice decay. Stefan’s ice growth equation (version by Michel et al.) and Bilello’s ice decay equation are applied to varying hydro-climatic conditions experienced in the years 2013–2019. Estimates from these equations are compared with observed field conditions such as ice thicknesses, ice clearance dates and freeze-thaw days. Overall, the equations were most accurate in the winter of 2016–2017 when the maximum mid-winter snow thickness value was high, the number of freeze-thaw days was the closest to the long-term average of northern Scandinavia, and the rate of thermal snow-melt in the subsequent spring was slow. The equations would need to be adjusted to take into account expected future changes to conditions such as shorter winters, less snow formation and increased frequency of air temperatures crossing 0 °C.
format Article in Journal/Newspaper
author Lotsari, Eliisa
Lind, Lovisa
Kämäri, Maria
author_facet Lotsari, Eliisa
Lind, Lovisa
Kämäri, Maria
author_sort Lotsari, Eliisa
title Impacts of hydro-climatically varying years on ice growth and decay in a subarctic river
title_short Impacts of hydro-climatically varying years on ice growth and decay in a subarctic river
title_full Impacts of hydro-climatically varying years on ice growth and decay in a subarctic river
title_fullStr Impacts of hydro-climatically varying years on ice growth and decay in a subarctic river
title_full_unstemmed Impacts of hydro-climatically varying years on ice growth and decay in a subarctic river
title_sort impacts of hydro-climatically varying years on ice growth and decay in a subarctic river
publisher MDPI
publishDate 2022
url http://hdl.handle.net/10138/341606
genre Subarctic
genre_facet Subarctic
op_relation https://doi.org/10.3390/w11102058
Water
11: 2058
2073-4441
Lotsari, E.; Lind, L.; Kämäri, M. Impacts of Hydro-Climatically Varying Years on Ice Growth and Decay in a Subarctic River. Water 2019, 11, 2058. https://doi.org/10.3390/w11102058
Suomen ympäristökeskus
http://hdl.handle.net/10138/341606
op_rights CC BY 4.0
openAccess
op_doi https://doi.org/10.3390/w11102058
container_title Water
container_volume 11
container_issue 10
container_start_page 2058
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