Year-to-year Variability in Arctic Minimum Sea Ice Extent and its Preconditions in Observations and the CESM Large Ensemble Simulations /704/106 /704/106/35 article

© 2018 The Author(s). Arctic sea ice extent (SIE) achieves its minimum in September each year and this value has been observed to decline steeply over the satellite era of the past three decades. Yet large year-to-year fluctuations are also present in the September SIE and the mechanisms for this va...

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Published in:Scientific Reports
Main Authors: Yang, W, Magnusdottir, G
Format: Article in Journal/Newspaper
Language:English
Published: eScholarship, University of California 2018
Subjects:
Online Access:http://www.escholarship.org/uc/item/92j4s5c2
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spelling ftcdlib:qt92j4s5c2 2023-05-15T13:10:55+02:00 Year-to-year Variability in Arctic Minimum Sea Ice Extent and its Preconditions in Observations and the CESM Large Ensemble Simulations /704/106 /704/106/35 article Yang, W Magnusdottir, G 2018-12-01 application/pdf http://www.escholarship.org/uc/item/92j4s5c2 english eng eScholarship, University of California qt92j4s5c2 http://www.escholarship.org/uc/item/92j4s5c2 public Yang, W; & Magnusdottir, G. (2018). Year-to-year Variability in Arctic Minimum Sea Ice Extent and its Preconditions in Observations and the CESM Large Ensemble Simulations /704/106 /704/106/35 article. Scientific Reports, 8(1). doi:10.1038/s41598-018-27149-y. UC Irvine: Retrieved from: http://www.escholarship.org/uc/item/92j4s5c2 article 2018 ftcdlib https://doi.org/10.1038/s41598-018-27149-y 2018-07-27T22:51:34Z © 2018 The Author(s). Arctic sea ice extent (SIE) achieves its minimum in September each year and this value has been observed to decline steeply over the satellite era of the past three decades. Yet large year-to-year fluctuations are also present in the September SIE and the mechanisms for this variability are still not clear. Here we address this issue by examining the preconditions in meteorological fields in the previous spring and summer from observations and a large ensemble of historical climate model simulations. The focus of this study is on the impact of anomalous moisture transport into the Arctic and the associated surface energy fluxes on the September SIE. We find that the below-normal September SIE is associated with enhanced moisture transport into the Arctic in spring, which induces downward thermal radiation at the surface. However, in summer, the anomalous moisture transport over the Arctic is divergent due to an anticyclonic atmospheric flow pattern and the ice albedo feedback plays a leading role in sea ice loss. Article in Journal/Newspaper albedo Arctic Arctic Sea ice University of California: eScholarship Arctic Scientific Reports 8 1
institution Open Polar
collection University of California: eScholarship
op_collection_id ftcdlib
language English
description © 2018 The Author(s). Arctic sea ice extent (SIE) achieves its minimum in September each year and this value has been observed to decline steeply over the satellite era of the past three decades. Yet large year-to-year fluctuations are also present in the September SIE and the mechanisms for this variability are still not clear. Here we address this issue by examining the preconditions in meteorological fields in the previous spring and summer from observations and a large ensemble of historical climate model simulations. The focus of this study is on the impact of anomalous moisture transport into the Arctic and the associated surface energy fluxes on the September SIE. We find that the below-normal September SIE is associated with enhanced moisture transport into the Arctic in spring, which induces downward thermal radiation at the surface. However, in summer, the anomalous moisture transport over the Arctic is divergent due to an anticyclonic atmospheric flow pattern and the ice albedo feedback plays a leading role in sea ice loss.
format Article in Journal/Newspaper
author Yang, W
Magnusdottir, G
spellingShingle Yang, W
Magnusdottir, G
Year-to-year Variability in Arctic Minimum Sea Ice Extent and its Preconditions in Observations and the CESM Large Ensemble Simulations /704/106 /704/106/35 article
author_facet Yang, W
Magnusdottir, G
author_sort Yang, W
title Year-to-year Variability in Arctic Minimum Sea Ice Extent and its Preconditions in Observations and the CESM Large Ensemble Simulations /704/106 /704/106/35 article
title_short Year-to-year Variability in Arctic Minimum Sea Ice Extent and its Preconditions in Observations and the CESM Large Ensemble Simulations /704/106 /704/106/35 article
title_full Year-to-year Variability in Arctic Minimum Sea Ice Extent and its Preconditions in Observations and the CESM Large Ensemble Simulations /704/106 /704/106/35 article
title_fullStr Year-to-year Variability in Arctic Minimum Sea Ice Extent and its Preconditions in Observations and the CESM Large Ensemble Simulations /704/106 /704/106/35 article
title_full_unstemmed Year-to-year Variability in Arctic Minimum Sea Ice Extent and its Preconditions in Observations and the CESM Large Ensemble Simulations /704/106 /704/106/35 article
title_sort year-to-year variability in arctic minimum sea ice extent and its preconditions in observations and the cesm large ensemble simulations /704/106 /704/106/35 article
publisher eScholarship, University of California
publishDate 2018
url http://www.escholarship.org/uc/item/92j4s5c2
geographic Arctic
geographic_facet Arctic
genre albedo
Arctic
Arctic
Sea ice
genre_facet albedo
Arctic
Arctic
Sea ice
op_source Yang, W; & Magnusdottir, G. (2018). Year-to-year Variability in Arctic Minimum Sea Ice Extent and its Preconditions in Observations and the CESM Large Ensemble Simulations /704/106 /704/106/35 article. Scientific Reports, 8(1). doi:10.1038/s41598-018-27149-y. UC Irvine: Retrieved from: http://www.escholarship.org/uc/item/92j4s5c2
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op_doi https://doi.org/10.1038/s41598-018-27149-y
container_title Scientific Reports
container_volume 8
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