Characteristics of sea ice thickness and snow depth distributions of the land-fast ice during summer in Lutzow-Holmbukta, Antarctica,revealed from ship-based observations

Sea ice observations have been conducted onboard the Antarctic Research Vessel Shirase" since . The authors summarize these data to investigate spatial and inter-annual variability of sea ice thickness and snow depth of the summer land-fast ice in Lutzow-Holmbukta. Probability density functions...

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Main Authors: Shotaro Uto, Haruhito Shimoda, Koh Izumiyama, Shuki Ushio, Shigeru Aoki, Gen Hashida, Hiroyuki Wakabayashi, Fumihiko Nishio
Format: Article
Language:English
Published: National Institute of Polar Research 2004-11-01
Series:Antarctic Record
Online Access:http://doi.org/10.15094/00009294
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spelling doaj-343431cbdb7c47f0beb88f25ccfef5bb2020-11-24T23:29:24ZengNational Institute of Polar ResearchAntarctic Record0085-72892432-079X2004-11-0148316517910.15094/00009294Characteristics of sea ice thickness and snow depth distributions of the land-fast ice during summer in Lutzow-Holmbukta, Antarctica,revealed from ship-based observationsShotaro Uto0Haruhito Shimoda1Koh Izumiyama2Shuki Ushio3Shigeru Aoki4Gen Hashida5Hiroyuki Wakabayashi6Fumihiko Nishio7National Maritime Resarch InstituteNational Maritime Resarch InstituteNational Maritime Resarch InstituteNational Institute of Polar ResearchInstitute of Low Temperature Science,Hokkaido UniversityNational Institute of Polar ResearchEarth Observation Research and Application Center, Japan Aerospace Exploration AgencyCenter for Environmental Remote Sensing, Chiba UniversitySea ice observations have been conducted onboard the Antarctic Research Vessel Shirase" since . The authors summarize these data to investigate spatial and inter-annual variability of sea ice thickness and snow depth of the summer land-fast ice in Lutzow-Holmbukta. Probability density functions of annual total thickness (ice thickness+snow depth) derived from video observations are categorized into two types, i.e. a thin-ice and a thick-ice type. The total thickness distributions observed by the electro-magnetic inductive method have a clear discontinuity, which reects the past break-up of the land-fast ice. Thin rst-year ice develops oshore of this location, while multi-year ice mostly develops onshore. Ice thickness and snow depth gradually decrease toward the coast within about km oshore, probably due to snow drift driven by the strong northeasterly wind. It is concluded that the past breakup of the land-fast ice as well as snow depth have dominant inuence on the spatial distribution of ice thickness in Lutzow-Holmbukta. The extent of break-up varies signicantly year by year. The smaller extent enhances the development of thick multi-year ice, while the larger extent, coupled with the inuence of snow drift, enhances reduction or extinction of thick multi-year ice. http://doi.org/10.15094/00009294
collection DOAJ
language English
format Article
sources DOAJ
author Shotaro Uto
Haruhito Shimoda
Koh Izumiyama
Shuki Ushio
Shigeru Aoki
Gen Hashida
Hiroyuki Wakabayashi
Fumihiko Nishio
spellingShingle Shotaro Uto
Haruhito Shimoda
Koh Izumiyama
Shuki Ushio
Shigeru Aoki
Gen Hashida
Hiroyuki Wakabayashi
Fumihiko Nishio
Characteristics of sea ice thickness and snow depth distributions of the land-fast ice during summer in Lutzow-Holmbukta, Antarctica,revealed from ship-based observations
Antarctic Record
author_facet Shotaro Uto
Haruhito Shimoda
Koh Izumiyama
Shuki Ushio
Shigeru Aoki
Gen Hashida
Hiroyuki Wakabayashi
Fumihiko Nishio
author_sort Shotaro Uto
title Characteristics of sea ice thickness and snow depth distributions of the land-fast ice during summer in Lutzow-Holmbukta, Antarctica,revealed from ship-based observations
title_short Characteristics of sea ice thickness and snow depth distributions of the land-fast ice during summer in Lutzow-Holmbukta, Antarctica,revealed from ship-based observations
title_full Characteristics of sea ice thickness and snow depth distributions of the land-fast ice during summer in Lutzow-Holmbukta, Antarctica,revealed from ship-based observations
title_fullStr Characteristics of sea ice thickness and snow depth distributions of the land-fast ice during summer in Lutzow-Holmbukta, Antarctica,revealed from ship-based observations
title_full_unstemmed Characteristics of sea ice thickness and snow depth distributions of the land-fast ice during summer in Lutzow-Holmbukta, Antarctica,revealed from ship-based observations
title_sort characteristics of sea ice thickness and snow depth distributions of the land-fast ice during summer in lutzow-holmbukta, antarctica,revealed from ship-based observations
publisher National Institute of Polar Research
series Antarctic Record
issn 0085-7289
2432-079X
publishDate 2004-11-01
description Sea ice observations have been conducted onboard the Antarctic Research Vessel Shirase" since . The authors summarize these data to investigate spatial and inter-annual variability of sea ice thickness and snow depth of the summer land-fast ice in Lutzow-Holmbukta. Probability density functions of annual total thickness (ice thickness+snow depth) derived from video observations are categorized into two types, i.e. a thin-ice and a thick-ice type. The total thickness distributions observed by the electro-magnetic inductive method have a clear discontinuity, which reects the past break-up of the land-fast ice. Thin rst-year ice develops oshore of this location, while multi-year ice mostly develops onshore. Ice thickness and snow depth gradually decrease toward the coast within about km oshore, probably due to snow drift driven by the strong northeasterly wind. It is concluded that the past breakup of the land-fast ice as well as snow depth have dominant inuence on the spatial distribution of ice thickness in Lutzow-Holmbukta. The extent of break-up varies signicantly year by year. The smaller extent enhances the development of thick multi-year ice, while the larger extent, coupled with the inuence of snow drift, enhances reduction or extinction of thick multi-year ice.
url http://doi.org/10.15094/00009294
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