Climate warming shortens ice durations and alters freeze and break-up patterns in Swedish water bodies
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Published:2022-06-24
Issue:6
Volume:16
Page:2493-2503
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ISSN:1994-0424
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Container-title:The Cryosphere
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language:en
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Short-container-title:The Cryosphere
Author:
Hallerbäck Sofia,Huning Laurie S.,Love Charlotte,Persson Magnus,Stensen Katarina,Gustafsson David,AghaKouchak Amir
Abstract
Abstract. Increasing air temperatures reduce the duration of ice cover on lakes and
rivers, threatening to alter their water quality, ecology, biodiversity, and
physical, economical and recreational function. Using a unique in situ
record of freeze and break-up dates, including records dating back to the
beginning of the 18th century, we analyze changes in ice duration (i.e.,
first freeze to last break-up), freeze and break-up patterns across Sweden.
Results indicate a significant trend in shorter ice duration (62 %), later
freeze (36 %) and earlier break-up (58 %) dates from 1913–2014. In the
latter 3 decades (1985–2014), the mean observed ice durations have decreased
by about 11 d in northern (above 60∘ N) and 28 d in southern Sweden
relative to the earlier three decades. In the same period, the average
freeze date occurred about 10 d later and break-up date about 17 d
earlier in southern Sweden. The rate of change is roughly twice as large in
southern Sweden as in the northern part. Sweden has experienced an increase
in occurrence of years with an extremely short ice cover duration (i.e.,
less than 50 d), which occurred about 8 times more often in southern
Sweden than previously observed. Our analysis indicates that even a 1 ∘C increase in air temperatures in southern (northern) Sweden
results in a mean decrease of ice duration of 22.5 (±7.6) d. Given that
warming is expected to continue across Sweden during the 21st century, we
expect increasingly significant impacts on ice cover duration and hence,
ecology, water quality, transportation, and recreational activities in the
region.
Funder
National Oceanic and Atmospheric Administration
Publisher
Copernicus GmbH
Subject
Earth-Surface Processes,Water Science and Technology
Reference53 articles.
1. Akima, H., Petzold, T., and Maeshler, M.: Interpolation of Irregularly and Regularly Spaced Data, Version 0.6–2, CRAN [code], https://cran.r-project.org/package=akima (last access: 1 September 2020), 16 December 2016. 2. Alexandersson, H. and Moberg, A.: Homogenization of Swedish
Temperature Data. Part I: Homogeneity Test for Linear Trends,
Int. J. Climatol., 17, 25–34,
https://doi.org/10.1002/(SICI)1097-0088(199701)17:1<25::AID-JOC103>3.0.CO;2-J, 1997. 3. Bauer, D.: Constructing confidence sets using rank
statistics, J. Am. Stat. Assoc., 67, 687–690, 1972. 4. Berger, S. A., Diehl, S., Kunz, T. J., Albrecht, D., Oucible, A. M., and Ritzer, S.:
Light Supply, Plankton Biomass, and
Seston Stoichiometry in a Gradient of Lake Mixing Depths, Limnol.
Oceanogr., 51, 1898–1905, 2006. 5. Benson, B. J., Magnuson, J. J., Jensen, O. P., Card, V. M., Hodgkins, G., Korhonen, J., Livingstone, D. M., Stewart, K. M.,
Weyhenmeyer, G. A., and Granin, N. G.: Extreme Events, Trends, and
Variability in Northern Hemisphere Lake-Ice Phenology (1855–2005),
Climatic Change, 112, 299–323, 2012.
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