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181
Characteristics of Atmospheric Circulation Associated with Variability of Sea Ice in the Arctic
Published 2020-09-01Get full text
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182
Modeling Sea Ice Effects for Wave Energy Resource Assessments
Published 2021-06-01“…Here, we show that by combining high-resolution sea ice imagery with a sea ice/wave dampening parameterization in an unstructured grid, the Simulating Waves Nearshore (SWAN) model improves wave height predictions and demonstrates the extent to which wave power decreases when sea ice is present. …”
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183
GOSI9: UK Global Ocean and Sea Ice configurations
Published 2025-01-01“…In particular, the excessive and unrealistic Arctic summer sea ice melt in GO6-GSI8 is significantly improved in GOSI9 and can be attributed to the change in the sea ice model and to the higher albedos that increased sea ice thickness.…”
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184
Observations of brine plumes below melting Arctic sea ice
Published 2018-02-01“…In sea ice, interconnected pockets and channels of brine are surrounded by fresh ice. …”
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185
Vulnerability of Arctic Ocean microbial eukaryotes to sea ice loss
Published 2024-11-01“…Abstract The Arctic Ocean (AO) is changing at an unprecedented rate, with ongoing sea ice loss, warming and freshening impacting the extent and duration of primary productivity over summer months. …”
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186
Inter-comparison and evaluation of Arctic sea ice type products
Published 2023-01-01“…<p>Arctic sea ice type (SITY) variation is a sensitive indicator of climate change. …”
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187
Manual Recovery of a Sea Ice Based Ocean Profiler
Published 2019-11-01Subjects: “…sea ice…”
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188
Observations of Snow Accumulation and Sea Ice at Syowa Station, Antarctica
Published 1971-03-01Get full text
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189
The Response of Surface Temperature Persistence to Arctic Sea‐Ice Loss
Published 2024-01-01“…Abstract We investigate the response of surface temperature persistence, quantified using a lagged autocorrelation, to imposed Arctic sea‐ice loss in coupled model experiments. Sea‐ice loss causes increases in persistence over ocean in midlatitudes and the low‐Arctic, which are of a similar magnitude to the total response to climate change in these regions. …”
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190
Automating the Acoustic Detection and Characterization of Sea Ice and Surface Waves
Published 2022-10-01Subjects: Get full text
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191
A drop in Antarctic sea ice extent at the end of the 1970s
Published 2024-10-01“…Abstract After a period of relative stability, the Antarctic sea ice extent has abruptly decreased in 2016 and has remained low since then. …”
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192
Tropical Forcing of Barents‐Kara Sea Ice During Autumn
Published 2023-04-01Subjects: Get full text
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193
The Arctic and Polar cells act on the Arctic sea ice variation
Published 2015-08-01Subjects: Get full text
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194
Sources of low-frequency variability in observed Antarctic sea ice
Published 2024-04-01“…<p>Antarctic sea ice has exhibited significant variability over the satellite record, including a period of prolonged and gradual expansion, as well as a period of sudden decline. …”
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195
Thermal Diffusivity Identification of Distributed Parameter Systems to Sea Ice
Published 2013-01-01“…A method of optimal control is presented as a numerical tool for solving the sea ice heat transfer problem governed by a parabolic partial differential equation. …”
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196
Atmospheric influences on the anomalous 2016 Antarctic sea ice decay
Published 2018-03-01“…In contrast to the Arctic, where total sea ice extent (SIE) has been decreasing for the last three decades, Antarctic SIE has shown a small, but significant, increase during the same time period. …”
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197
An Intercomparison of Satellite Derived Arctic Sea Ice Motion Products
Published 2022-03-01Subjects: Get full text
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198
Sea salt deposited snow on sea ice and snow drift
Published 1988-03-01“…Fallen snow, snow drift and deposited snow on sea ice were collected in 1986 near Syowa Station, East Antarctica. …”
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199
Sea‐Ice Deformations at the Submesoscale and Below During the Melting Season
Published 2025-02-01“…Abstract Many sea‐ice models formulate sea‐ice rheology by a viscous‐plastic approach with an elliptical yield curve and a normal flow rule. …”
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200
Potential impact of the sea-ice ecosystem to the polar seas biogeochemistry
Published 2023-07-01“…We used a one-dimensional vertical transport model, the sympagic-pelagic-benthic vertical transport model (SPBM) to explore the impact of sea-ice presence on phytoplankton phenology and biogeochemical dynamics. …”
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