An Amundsen Sea source of decadal temperature changes on the Antarctic continental shelf

IF 2.2 3区 地球科学 Q2 OCEANOGRAPHY Ocean Dynamics Pub Date : 2023-11-21 DOI:10.1007/s10236-023-01587-3
Sybren S. Drijfhout, Christopher Y. S. Bull, Helene Hewitt, Paul R. Holland, Adrian Jenkins, Pierre Mathiot, Alberto Naveira Garabato
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Abstract

Mass loss from the Antarctic Ice Sheet is dominated by basal melting–induced warm ocean water. Ice-sheet mass loss and thinning of buttressing ice shelves occur primarily in the Amundsen and Bellingshausen Seas. Here, we show that in a global ocean simulation using the 0.25° Nucleus for European Modeling of Ocean (NEMO) model driven by the JRA55 reanalysis from 1982 to 2017, the Amundsen sector of the Antarctic continental shelf acts as a gateway, regulating the on-shelf access of warm Circumpolar Deep Water (CDW) from the deep ocean and its westward transfer to other sectors up to ca. 90° E, particularly the Ross Sea. As a result, anomalies in Antarctic-shelf-averaged temperature mainly originate in the Amundsen sector. These changes are primarily governed by shifts in the Amundsen Sea Low associated with tropical climate variability, modulating the on-shelf transport of CDW via wind-driven perturbations to ocean currents. The ensuing temperature anomalies progress westward from the Amundsen Sea via three distinct routes: a slow, convoluted westward pathway on the shelf via the Antarctic Coastal Current; a faster westward pathway along the shelf break via the Antarctic Slope Current and then onto the shelf along topographic troughs; and a third, eastward route toward the Bellingshausen sector, whereby temperature anomalies are transported into a region of local wind-generated changes farther north. These results emphasize the importance of the Amundsen sector for climate variability over the Antarctic shelves.

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南极大陆架年代际温度变化的阿蒙森海源
南极冰盖的质量损失主要是由基底融化引起的暖海水造成的。冰盖质量损失和支撑冰架变薄主要发生在阿蒙森海和别令斯豪森海。在1982年至2017年由JRA55再分析驱动的0.25°欧洲海洋模型(NEMO)模式的全球海洋模拟中,南极大陆架阿蒙森扇区作为一个门户,调节温暖的环极深水(CDW)从深海进入大陆架,并向西转移到东经约90°的其他扇区,特别是罗斯海。因此,南极大陆架平均温度异常主要源于阿蒙森板块。这些变化主要是由与热带气候变率相关的阿蒙森海低压的变化所控制的,它通过风对洋流的扰动调节了大陆架上CDW的运输。随后的温度异常从阿蒙森海向西移动,有三条不同的路线:大陆架上缓慢而曲折的向西通道,通过南极海岸流;沿着大陆架断裂向西通过南极斜坡流,然后沿着地形槽到达大陆架;第三条是通往别令斯豪森地区的向东路线,通过这条路线,温度异常被输送到更北的当地风力变化区域。这些结果强调了阿蒙森区对南极冰架气候变化的重要性。
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来源期刊
Ocean Dynamics
Ocean Dynamics 地学-海洋学
CiteScore
5.40
自引率
0.00%
发文量
37
审稿时长
6-12 weeks
期刊介绍: Ocean Dynamics is an international journal that aims to publish high-quality peer-reviewed articles in the following areas of research: Theoretical oceanography (new theoretical concepts that further system understanding with a strong view to applicability for operational or monitoring purposes); Computational oceanography (all aspects of ocean modeling and data analysis); Observational oceanography (new techniques or systematic approaches in measuring oceanic variables, including all aspects of monitoring the state of the ocean); Articles with an interdisciplinary character that encompass research in the fields of biological, chemical and physical oceanography are especially encouraged.
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