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Relative Impacts of Sea Ice Loss and Atmospheric Internal Variability on the Winter Arctic to East Asian Surface Air Temperature Based on Large-Ensemble Simulations with NorESM2

Shengping He; Helge Drange; Tore Furevik; Huijun Wang; Ke Fan; Lise Seland Graff; Yvan J. Orsolini
Advances in Atmospheric Sciences · Vol. 41, Issue 8 · pp. 1511-1526 · 2024

Abstract

To quantify the relative contributions of Arctic sea ice and unforced atmospheric internal variability to the “warm Arctic, cold East Asia” (WACE) teleconnection, this study analyses three sets of large-ensemble simulations carried out by the Norwegian Earth System Model with a coupled atmosphere–land surface model, forced by seasonal sea ice conditions from preindustrial, present-day, and future periods. Each ensemble member within the same set uses the same forcing but with small perturbations to the atmospheric initial state. Hence, the difference between the present-day (or future) ensemble mean and the preindustrial ensemble mean provides the ice-loss-induced response, while the difference of the individual members within the present-day (or future) set is the effect of atmospheric internal variability. Results indicate that both present-day and future sea ice loss can force a negative phase of the Arctic Oscillation with a WACE pattern in winter. The magnitude of ice-induced Arctic warming is over four (ten) times larger than the ice-induced East Asian cooling in the present-day (future) experiment; the latter having a magnitude that is about 30% of the observed cooling. Sea ice loss contributes about 60% (80%) to the Arctic winter warming in the present-day (future) experiment. Atmospheric internal variability can also induce a WACE pattern with comparable magnitudes between the Arctic and East Asia. Ice-loss-induced East Asian cooling can easily be masked by atmospheric internal variability effects because random atmospheric internal variability may induce a larger magnitude warming. The observed WACE pattern occurs as a result of both Arctic sea ice loss and atmospheric internal variability, with the former dominating Arctic warming and the latter dominating East Asian cooling.

Bibliographic Information

JournalAdvances in Atmospheric Sciences
PublisherSpringer
Publication Date2024-08-01
Publication Year2024
Volume41
Issue8
Pages1511-1526
Document TypeJournal Article
Print ISSN0256-1530
eISSN1861-9533
DOI10.1007/s00376-023-3006-9

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NARA Access Coverage1984-01-01~Current
Journal Homepagehttps://www.springer.com/journal/376
Publisher PageOpen Publisher Page
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