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Artificial Flooding Leads to Thicker and Brighter Arctic Sea Ice

delete2026-05-22
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OA
AI
E
Edward Blanchard‐Wrigglesworth *
A
Andrea Ceccolini *
A
Andrew Smith
A
Andrew Woods
C
Cían Sherwin
K
Konrad Borowski
P
Pascal Martin-Daguet
S
Simon Woods
T
Tom Clipston
T
Tommaso Di Gioacchino
M
Molly Wieringa
J
Jacob Pantling
K
Kate Oglethorpe
S
Shaun Fitzgerald
S
S. J. Desch
H
Hilairy E. Hartnett
B
Brendan P. Kelly
A
Alison Tan
B
Bernard Steffin
I
Isaac Eskind
B
Brandon Langan
B
Brent Nakashook
B
Brian Kavanna
B
Brodie Larocque
D
David Kavanna
R
Roland Emingak
C
Cecilia M. Bitz
DOI:10.1029/2025EF007894delete
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Abstract

Abstract

En 中文
We describe and present results from a 2024/2025 field campaign that is the first to test and observe the impact of flooding and meltwater draining on Arctic sea ice over the winter growth and spring melt seasons. The campaign was conducted in Cambridge Bay, Nunavut, Canada. A 1 by 1 km fieldwork site was used, comprising three control areas, which were never flooded, and eight test areas. In these, flooding treatments were carried out by pumping seawater onto the sea ice. Some test areas were flooded once (in December or January), while others were flooded twice (in December and February, or January and February). The total area flooded was 0.25 km 2 ${\text{km}}^{2}$ . Additionally, one control area was used for a melt pond drainage experiment during spring. By mid May, prior to melt, flooded test areas were up to 32 cm thicker than control areas, with snow cover that was 1–13 cm thinner. Areas flooded twice exhibited greater thickening than those flooded once. During the melt period, sea ice in the flooded areas appeared brighter and showed slower melt rates, remaining thicker than that in the control areas. The drained melt pond site also brightened markedly within 1 week of borehole drilling. Comparison with a historical sea ice thickness record from Cambridge Bay indicates that a 30 cm increase corresponds to roughly the magnitude of long-term thinning observed over the past 50 years.
Keywords:
sea ice
Arctic
climate change
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