4.4 Article

Sub-kilometre scale distribution of snow depth on Arctic sea ice from Soviet drifting stations

Related references

Note: Only part of the references are listed.
Article Environmental Sciences

A Multi-Sensor and Modeling Approach for Mapping Light Under Sea Ice During the Ice-Growth Season

Julienne Stroeve et al.

Summary: This study examines the impact of Arctic sea ice changes on under-ice light and algae growth, highlighting the importance of snow depth and thin ice fraction in light penetration into the Arctic Ocean. It also suggests a method to map under-ice light using satellite and modeled data, while identifying changing factors in different seasons.

FRONTIERS IN MARINE SCIENCE (2021)

Article Environmental Sciences

Snow Depth and Air Temperature Seasonality on Sea Ice Derived From Snow Buoy Measurements

Marcel Nicolaus et al.

Summary: This study presents a new autonomous platform designed to measure snow depth and other parameters on drifting Arctic and Antarctic sea ice. The dataset includes 79 time series since 2013, showing regional differences in the annual cycle of snow depth on sea ice.

FRONTIERS IN MARINE SCIENCE (2021)

Article Geography, Physical

Impacts of snow data and processing methods on the interpretation of long-term changes in Baffin Bay early spring sea ice thickness

Isolde A. Glissenaar et al.

Summary: A long-term assessment of spring sea ice thickness in Baffin Bay from 2003 to 2020 revealed variations in ice thickness calculations based on different snow depth/density products and redistribution methods. While snow depth redistribution had a significant impact on ice thickness calculations from laser freeboards, it was unnecessary for radar freeboards. Trends in March sea ice thickness ranged from 23 to 17 cm per decade depending on the snow depth/density product and redistribution method employed. Additionally, the study found evidence for long-term asymmetrical trends in Baffin Bay sea ice thickness since 2003, with thinning in the west and thickening in the east of the bay.

CRYOSPHERE (2021)

Article Geography, Physical

Faster decline and higher variability in the sea ice thickness of the marginal Arctic seas when accounting for dynamic snow cover

Robbie D. C. Mallett et al.

Summary: The mean sea ice thickness in four of the seven marginal seas is declining between 60%-100% faster when calculated with new snow data compared to conventional climatology. When analyzed for 7 winter months, the mean sea ice thickness in the marginal seas shows statistically significant decline for 6 of the months.

CRYOSPHERE (2021)

Article Geography, Physical

Inter-comparison of snow depth over Arctic sea ice from reanalysis reconstructions and satellite retrieval

Lu Zhou et al.

Summary: This study compared eight recently developed snow depth products over Arctic sea ice, revealing significant discrepancies in snow depth among different products, especially over the Atlantic and Canadian Arctic sectors. The correlations between the snow products and ground-truth observations were generally low, emphasizing the need for more targeted Arctic surveys to allow for a systematic comparison and fusion of airborne, in situ and remote sensing observations.

CRYOSPHERE (2021)

Article Geography, Physical

Surface-based Ku- and Ka-band polarimetric radar for sea ice studies

Julienne Stroeve et al.

CRYOSPHERE (2020)

Article Geography, Physical

The MOSAiC ice floe: sediment-laden survivor from the Siberian shelf

Thomas Krumpen et al.

CRYOSPHERE (2020)

Article Oceanography

A Distributed Snow-Evolution Model for Sea-Ice Applications (SnowModel)

Glen E. Liston et al.

JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS (2018)

Review Environmental Sciences

Changing state of Arctic sea ice across all seasons

Julienne Stroeve et al.

ENVIRONMENTAL RESEARCH LETTERS (2018)

Article Geosciences, Multidisciplinary

The NASA Eulerian Snow on Sea Ice Model (NESOSIM) v1.0: initial model development and analysis

Alek A. Petty et al.

GEOSCIENTIFIC MODEL DEVELOPMENT (2018)

Article Geography, Physical

Estimating snow depth over Arctic sea ice from calibrated dual-frequency radar freeboards

Isobel R. Lawrence et al.

CRYOSPHERE (2018)

Article Geography, Physical

Small-scale variation of snow in a regional permafrost model

Kjersti Gisnas et al.

CRYOSPHERE (2016)

Article Geosciences, Multidisciplinary

Snow bedforms: A review, new data, and a formation model

Simon Filhol et al.

JOURNAL OF GEOPHYSICAL RESEARCH-EARTH SURFACE (2015)

Article Oceanography

Seasonal evolution of melt ponds on Arctic sea ice

Melinda A. Webster et al.

JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS (2015)

Article Geochemistry & Geophysics

A First Assessment of IceBridge Snow and Ice Thickness Data Over Arctic Sea Ice

Sinead Louise Farrell et al.

IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING (2012)

Article Oceanography

The mechanisms of sea ice melt pond formation and evolution

Chris Polashenski et al.

JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS (2012)

Article Meteorology & Atmospheric Sciences

Blowing Snow on Arctic Sea Ice: Results from an Improved Sea Ice-Snow-Blowing Snow Coupled System

Yi-Ching Chung et al.

JOURNAL OF HYDROMETEOROLOGY (2011)

Article Geosciences, Multidisciplinary

Modelling the spatial variability of snow water equivalent at the catchment scale

T. Skaugen

HYDROLOGY AND EARTH SYSTEM SCIENCES (2007)

Article Geochemistry & Geophysics

Snow depth and ice thickness measurements from the Beaufort and Chukchi seas collected during the AMSR-Ice03 campaign

Matthew Sturm et al.

IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING (2006)