Regional melt-pond fraction and albedo of thin Arctic first-year drift ice in late summer

- The paper presents a case study of the regional (≈150 km) morphological and optical properties of a relatively thin, 70–90 cm modal thickness, first-year Arctic sea ice pack in an advanced stage of melt. The study combines in situ broadband albedo measurements representative of the four main surfa...

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Published in:The Cryosphere
Main Authors: Divine, Dmitry V, Granskog, Mats A., Hudson, Stephen R., Pedersen, Christina Alsvik, Karlsen, Tor Ivan, Divina, S.A., Renner, Angelika, Gerland, Sebastian
Format: Article in Journal/Newspaper
Language:English
Published: European Geosciences Union 2015
Subjects:
Online Access:http://hdl.handle.net/11250/293631
https://doi.org/10.5194/tc-9-255-2015
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spelling ftimr:oai:imr.brage.unit.no:11250/293631 2023-05-15T13:10:33+02:00 Regional melt-pond fraction and albedo of thin Arctic first-year drift ice in late summer Divine, Dmitry V Granskog, Mats A. Hudson, Stephen R. Pedersen, Christina Alsvik Karlsen, Tor Ivan Divina, S.A. Renner, Angelika Gerland, Sebastian 2015-06-24T14:02:00Z application/pdf http://hdl.handle.net/11250/293631 https://doi.org/10.5194/tc-9-255-2015 eng eng European Geosciences Union Divine, D. V., Granskog, M. A., Hudson, S. R., Pedersen, C. A., Karlsen, T. I., Divina, S. A., Renner, A. H. H., and Gerland, S.: Regional melt-pond fraction and albedo of thin Arctic first-year drift ice in late summer, The Cryosphere, 9, 255-268, doi:10.5194/tc-9-255-2015, 2015. urn:issn:1994-0424 http://hdl.handle.net/11250/293631 https://doi.org/10.5194/tc-9-255-2015 cristin:1250127 Navngivelse-DelPåSammeVilkår 3.0 Norge http://creativecommons.org/licenses/by-sa/3.0/no/ CC-BY-SA 255-268 9 The Cryosphere Journal article Peer reviewed 2015 ftimr https://doi.org/10.5194/tc-9-255-2015 2021-09-23T20:15:39Z - The paper presents a case study of the regional (≈150 km) morphological and optical properties of a relatively thin, 70–90 cm modal thickness, first-year Arctic sea ice pack in an advanced stage of melt. The study combines in situ broadband albedo measurements representative of the four main surface types (bare ice, dark melt ponds, bright melt ponds and open water) and images acquired by a helicopter-borne camera system during ice-survey flights. The data were collected during the 8-day ICE12 drift experiment carried out by the Norwegian Polar Institute in the Arctic, north of Svalbard at 82.3° N, from 26 July to 3 August 2012. A set of > 10 000 classified images covering about 28 km2 revealed a homogeneous melt across the study area with melt-pond coverage of ≈ 0.29 and open-water fraction of ≈ 0.11. A decrease in pond fractions observed in the 30 km marginal ice zone (MIZ) occurred in parallel with an increase in open-water coverage. The moving block bootstrap technique applied to sequences of classified sea-ice images and albedo of the four surface types yielded a regional albedo estimate of 0.37 (0.35; 0.40) and regional sea-ice albedo of 0.44 (0.42; 0.46). Random sampling from the set of classified images allowed assessment of the aggregate scale of at least 0.7 km2 for the study area. For the current setup configuration it implies a minimum set of 300 images to process in order to gain adequate statistics on the state of the ice cover. Variance analysis also emphasized the importance of longer series of in situ albedo measurements conducted for each surface type when performing regional upscaling. The uncertainty in the mean estimates of surface type albedo from in situ measurements contributed up to 95% of the variance of the estimated regional albedo, with the remaining variance resulting from the spatial inhomogeneity of sea-ice cover. Article in Journal/Newspaper albedo Arctic Arctic ice pack Norwegian Polar Institute Sea ice Svalbard The Cryosphere Institute for Marine Research: Brage IMR Arctic Svalbard The Cryosphere 9 1 255 268
institution Open Polar
collection Institute for Marine Research: Brage IMR
op_collection_id ftimr
language English
description - The paper presents a case study of the regional (≈150 km) morphological and optical properties of a relatively thin, 70–90 cm modal thickness, first-year Arctic sea ice pack in an advanced stage of melt. The study combines in situ broadband albedo measurements representative of the four main surface types (bare ice, dark melt ponds, bright melt ponds and open water) and images acquired by a helicopter-borne camera system during ice-survey flights. The data were collected during the 8-day ICE12 drift experiment carried out by the Norwegian Polar Institute in the Arctic, north of Svalbard at 82.3° N, from 26 July to 3 August 2012. A set of > 10 000 classified images covering about 28 km2 revealed a homogeneous melt across the study area with melt-pond coverage of ≈ 0.29 and open-water fraction of ≈ 0.11. A decrease in pond fractions observed in the 30 km marginal ice zone (MIZ) occurred in parallel with an increase in open-water coverage. The moving block bootstrap technique applied to sequences of classified sea-ice images and albedo of the four surface types yielded a regional albedo estimate of 0.37 (0.35; 0.40) and regional sea-ice albedo of 0.44 (0.42; 0.46). Random sampling from the set of classified images allowed assessment of the aggregate scale of at least 0.7 km2 for the study area. For the current setup configuration it implies a minimum set of 300 images to process in order to gain adequate statistics on the state of the ice cover. Variance analysis also emphasized the importance of longer series of in situ albedo measurements conducted for each surface type when performing regional upscaling. The uncertainty in the mean estimates of surface type albedo from in situ measurements contributed up to 95% of the variance of the estimated regional albedo, with the remaining variance resulting from the spatial inhomogeneity of sea-ice cover.
format Article in Journal/Newspaper
author Divine, Dmitry V
Granskog, Mats A.
Hudson, Stephen R.
Pedersen, Christina Alsvik
Karlsen, Tor Ivan
Divina, S.A.
Renner, Angelika
Gerland, Sebastian
spellingShingle Divine, Dmitry V
Granskog, Mats A.
Hudson, Stephen R.
Pedersen, Christina Alsvik
Karlsen, Tor Ivan
Divina, S.A.
Renner, Angelika
Gerland, Sebastian
Regional melt-pond fraction and albedo of thin Arctic first-year drift ice in late summer
author_facet Divine, Dmitry V
Granskog, Mats A.
Hudson, Stephen R.
Pedersen, Christina Alsvik
Karlsen, Tor Ivan
Divina, S.A.
Renner, Angelika
Gerland, Sebastian
author_sort Divine, Dmitry V
title Regional melt-pond fraction and albedo of thin Arctic first-year drift ice in late summer
title_short Regional melt-pond fraction and albedo of thin Arctic first-year drift ice in late summer
title_full Regional melt-pond fraction and albedo of thin Arctic first-year drift ice in late summer
title_fullStr Regional melt-pond fraction and albedo of thin Arctic first-year drift ice in late summer
title_full_unstemmed Regional melt-pond fraction and albedo of thin Arctic first-year drift ice in late summer
title_sort regional melt-pond fraction and albedo of thin arctic first-year drift ice in late summer
publisher European Geosciences Union
publishDate 2015
url http://hdl.handle.net/11250/293631
https://doi.org/10.5194/tc-9-255-2015
geographic Arctic
Svalbard
geographic_facet Arctic
Svalbard
genre albedo
Arctic
Arctic
ice pack
Norwegian Polar Institute
Sea ice
Svalbard
The Cryosphere
genre_facet albedo
Arctic
Arctic
ice pack
Norwegian Polar Institute
Sea ice
Svalbard
The Cryosphere
op_source 255-268
9
The Cryosphere
op_relation Divine, D. V., Granskog, M. A., Hudson, S. R., Pedersen, C. A., Karlsen, T. I., Divina, S. A., Renner, A. H. H., and Gerland, S.: Regional melt-pond fraction and albedo of thin Arctic first-year drift ice in late summer, The Cryosphere, 9, 255-268, doi:10.5194/tc-9-255-2015, 2015.
urn:issn:1994-0424
http://hdl.handle.net/11250/293631
https://doi.org/10.5194/tc-9-255-2015
cristin:1250127
op_rights Navngivelse-DelPåSammeVilkår 3.0 Norge
http://creativecommons.org/licenses/by-sa/3.0/no/
op_rightsnorm CC-BY-SA
op_doi https://doi.org/10.5194/tc-9-255-2015
container_title The Cryosphere
container_volume 9
container_issue 1
container_start_page 255
op_container_end_page 268
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