Roles of multiscale oceanic processes in driving ocean warming in the East Australian Current
ID:2587 View Protection:ATTENDEE Updated Time:2024-04-12 15:08:59 Hits:1801 Oral Presentation

Start Time:2024-05-19 14:10(Asia/Shanghai)

Duration:10min

Session:S6 主题​6、海洋地球科学 » S6-7主题6、海洋地球科学 专题6.1、专题6.2(19日下午,302)

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Abstract

Western boundary current (WBC) extensions such as the East Australian Current (EAC) southern extension are warming 2–3 times faster than the global average.  Among WBCs, the EAC has a more energetic eddy field relative to its mean flow. However, the mechanisms responsible for the enhanced warming over the EAC extensions are still debated. Here we show that barotropic instabilities are the primary source of eddy kinetic energy (EKE), and they control EKE variability in the EAC system. The ocean warming variability in the EAC is associated with the formation of anticyclonic eddies.  Enhanced eddy generation in the EAC extensions through changes in barotropic instabilities results in enhanced ocean warming as the eddies propagate. This results from a poleward shift of the EAC, associated with changes in the mid-latitude easterly winds. Consequently, the EAC have penetrated poleward but not strengthened and are now transporting more heat into their extensions. Our study clearly elucidates the dynamic processes driving increased eddying and warming in the EAC extensions and has implications for understanding and predicting ocean warming, marine heatwaves and the impact on the marine ecosystem in the WBC extensions under climate change.
Keywords
西边界流,中尺度涡,海洋变暖
Speaker
李俊德
教授 河海大学

Submission Author
李俊德 河海大学
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    May 17

    2024

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    May 20

    2024

  • Mar 31 2024

    Draft paper submission deadline

  • Mar 31 2024

    Contribution Submission Deadline

  • May 20 2024

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Sponsored By
青年地学论坛理事会
Organized By
厦门大学近海海洋环境科学国家重点实验室
中国科学院城市环境研究所
自然资源部第三海洋研究所
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