Recent upper Arctic Ocean warming expedited by summertime atmospheric processes

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作者
Zhe Li
Qinghua Ding
Michael Steele
Axel Schweiger
机构
[1] University of California,Department of Geography, and Earth Research Institute
[2] Santa Barbara,Polar Science Center, Applied Physics Laboratory
[3] University of Washington,undefined
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Nature Communications | / 13卷
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摘要
The observed upper (0–50 m) Arctic Ocean warming since 1979 has been primarily attributed to anthropogenically driven changes in the high latitudes. Here, using both observational and modeling analyses, we demonstrate that a multiyear trend in the summertime large-scale atmospheric circulation, which we ascribe to internal variability, has played an important role in upper ocean warming in summer and fall over the past four decades due to sea ice-albedo effect induced by atmospheric dynamics. Nudging experiments in which the wind fields are constrained toward the observed state support this mechanism and suggest that the internal variability contribution to recent upper Arctic Ocean warming accounts for up to one quarter of warming over the past four decades and up to 60% of warming from 2000 to 2018. This suggests that climate models need to replicate this important internal process in order to realistically simulate Arctic Ocean temperature variability and trends.
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[51]  
Steele M(2019)Arctic Ocean Response to Greenland Sea Wind Anomalies in a Suite of Model Simulations J. Geophys. Res. 124 e2019GL085666-2049
[52]  
Zhang J(2019)Ocean Heat Transport Into the Barents Sea: Distinct Controls on the Upward Trend and Interannual Variability Geophys. Res. Lett. 46 275-560
[53]  
Ermold W(2019)Intensification of the Atlantic Water supply to the Arctic Ocean through Fram Strait induced by Arctic sea ice decline Earth Space Sci. Open Arch. 123 e2020GL088854-576
[54]  
Oldenburg D(2018)Atlantic Water Heat Transport Variability in the 20th Century Arctic Ocean From a Global Ocean Model and Observations J. Geophys. Res. 47 592-2685
[55]  
Armour KC(2020)Nonstationary Teleconnection Between the Pacific Ocean and Arctic Sea Ice Geophys. Res. Lett. 13 634-67
[56]  
Thompson L(2020)Tropical climate responses to projected Arctic and Antarctic sea-ice loss Nat. Geosci. 47 285-154
[57]  
Bitz CM(2020)Forced Changes in the Arctic Freshwater Budget Emerge in the Early 21st Century Geophys. Res. Lett. 591 1613-2009
[58]  
Polyakov IV(2021)Summertime increases in upper-ocean stratification and mixed-layer depth Nature 8 779-undefined
[59]  
Tsubouchi T(2018)Arctic warming hotspot in the northern Barents Sea linked to declining sea-ice import Nat. Clim. Change 356 6967-undefined
[60]  
Lindsay RW(2017)Greater role for Atlantic inflows on sea-ice loss in the Eurasian Basin of the Arctic Ocean Science 52 2250-undefined