2008), The decline in arctic sea‐ice thickness: Separating the spatial, annual, and interannual variability in a quarter century of submarine data

[1] Naval submarines have collected operational data of sea-ice draft (93 % of thickness) in the Arctic Ocean since 1958. Data from 34 U.S. cruises are publicly archived. They span the years 1975 to 2000, are equally distributed in spring and autumn, and cover roughly half the Arctic Ocean. The data...

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Main Authors: D. A. Rothrock, D. B. Percival, M. Wensnahan
Other Authors: The Pennsylvania State University CiteSeerX Archives
Format: Text
Language:English
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Online Access:http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.557.3130
http://www.arctic.noaa.gov/detect/Rothrock2008.pdf
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spelling ftciteseerx:oai:CiteSeerX.psu:10.1.1.557.3130 2023-05-15T14:55:49+02:00 2008), The decline in arctic sea‐ice thickness: Separating the spatial, annual, and interannual variability in a quarter century of submarine data D. A. Rothrock D. B. Percival M. Wensnahan The Pennsylvania State University CiteSeerX Archives application/pdf http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.557.3130 http://www.arctic.noaa.gov/detect/Rothrock2008.pdf en eng http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.557.3130 http://www.arctic.noaa.gov/detect/Rothrock2008.pdf Metadata may be used without restrictions as long as the oai identifier remains attached to it. http://www.arctic.noaa.gov/detect/Rothrock2008.pdf text ftciteseerx 2016-01-08T11:50:15Z [1] Naval submarines have collected operational data of sea-ice draft (93 % of thickness) in the Arctic Ocean since 1958. Data from 34 U.S. cruises are publicly archived. They span the years 1975 to 2000, are equally distributed in spring and autumn, and cover roughly half the Arctic Ocean. The data set is strong: we use 2203 values of mean draft, each value averaged over a nominal length of 50 km. These values range from 0 to 6 m with a standard deviation of 0.99 m. Multiple regression is used to separate the interannual change, the annual cycle, and the spatial field. The solution gives a climatology for ice draft as a function of space and time. The residuals of the regression have a standard deviation of 0.46 m, slightly more than the observational error standard deviation of 0.38 m. The overall mean of the solution is 2.97 m. Annual mean ice draft declined from a peak of 3.42 m in 1980 to a minimum of 2.29 m in 2000, a decrease of 1.13 m (1.25 m in thickness). The steepest rate of decrease is 0.08 meters per year (m/a) in 1990. The rate slows to 0.007 m/a at the end of the record. The annual cycle has a maximum on 30 April and a peak-to-trough amplitude of 1.06 m (1.12 m in thickness). The spatial contour map of the temporal mean draft varies from a minimum draft of 2.2 m near Alaska to a maximum just over 4 m at the edge of the data release area 200 miles north Text Arctic Arctic Ocean Sea ice Alaska Unknown Arctic Arctic Ocean
institution Open Polar
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language English
description [1] Naval submarines have collected operational data of sea-ice draft (93 % of thickness) in the Arctic Ocean since 1958. Data from 34 U.S. cruises are publicly archived. They span the years 1975 to 2000, are equally distributed in spring and autumn, and cover roughly half the Arctic Ocean. The data set is strong: we use 2203 values of mean draft, each value averaged over a nominal length of 50 km. These values range from 0 to 6 m with a standard deviation of 0.99 m. Multiple regression is used to separate the interannual change, the annual cycle, and the spatial field. The solution gives a climatology for ice draft as a function of space and time. The residuals of the regression have a standard deviation of 0.46 m, slightly more than the observational error standard deviation of 0.38 m. The overall mean of the solution is 2.97 m. Annual mean ice draft declined from a peak of 3.42 m in 1980 to a minimum of 2.29 m in 2000, a decrease of 1.13 m (1.25 m in thickness). The steepest rate of decrease is 0.08 meters per year (m/a) in 1990. The rate slows to 0.007 m/a at the end of the record. The annual cycle has a maximum on 30 April and a peak-to-trough amplitude of 1.06 m (1.12 m in thickness). The spatial contour map of the temporal mean draft varies from a minimum draft of 2.2 m near Alaska to a maximum just over 4 m at the edge of the data release area 200 miles north
author2 The Pennsylvania State University CiteSeerX Archives
format Text
author D. A. Rothrock
D. B. Percival
M. Wensnahan
spellingShingle D. A. Rothrock
D. B. Percival
M. Wensnahan
2008), The decline in arctic sea‐ice thickness: Separating the spatial, annual, and interannual variability in a quarter century of submarine data
author_facet D. A. Rothrock
D. B. Percival
M. Wensnahan
author_sort D. A. Rothrock
title 2008), The decline in arctic sea‐ice thickness: Separating the spatial, annual, and interannual variability in a quarter century of submarine data
title_short 2008), The decline in arctic sea‐ice thickness: Separating the spatial, annual, and interannual variability in a quarter century of submarine data
title_full 2008), The decline in arctic sea‐ice thickness: Separating the spatial, annual, and interannual variability in a quarter century of submarine data
title_fullStr 2008), The decline in arctic sea‐ice thickness: Separating the spatial, annual, and interannual variability in a quarter century of submarine data
title_full_unstemmed 2008), The decline in arctic sea‐ice thickness: Separating the spatial, annual, and interannual variability in a quarter century of submarine data
title_sort 2008), the decline in arctic sea‐ice thickness: separating the spatial, annual, and interannual variability in a quarter century of submarine data
url http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.557.3130
http://www.arctic.noaa.gov/detect/Rothrock2008.pdf
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Arctic Ocean
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Arctic Ocean
Sea ice
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Sea ice
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op_source http://www.arctic.noaa.gov/detect/Rothrock2008.pdf
op_relation http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.557.3130
http://www.arctic.noaa.gov/detect/Rothrock2008.pdf
op_rights Metadata may be used without restrictions as long as the oai identifier remains attached to it.
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