Temporal Evolution of a Geostrophic Current under Sea Ice
ID:2287 View Protection:PRIVATE Updated Time:2023-04-11 15:12:11 Hits:2032 Oral Presentation

Start Time:2023-05-07 15:39(Asia/Shanghai)

Duration:12min

Session:18A 18A、冰冻圈科学 » 18A-318A-3 冰冻圈科学

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Abstract
A simplified quasigeostrophic (QG) analytical model together with an idealized numerical model are used to study the effect of uneven ice-ocean stress on the temporal evolution of the geostrophic current under sea ice. The tendency of the geostrophic velocity in the QG model is given as a function of the lateral gradient of vertical velocity and is further related to the ice-ocean stress with consideration of a surface boundary layer. Combining the analytical and numerical solutions, we demonstrate that the uneven stress between the ice and an initially surface-intensified, laterally sheared geostrophic current can drive an overturning circulation to trigger the displacement of isopycnals and modify the vertical structure of the geostrophic velocity. When the near-surface isopycnals become tilted in the opposite direction to the deeper ones, a subsurface velocity core is generated (via geostrophic set up). This mechanism should help understand the formation of subsurface currents in the edge of Chukchi and Beaufort Seas seen in observations. Furthermore, our solutions reveal a reversed flow extending from the bottom to the mid-depth, suggesting that the ice-induced overturning circulation potentially influences the currents in the deep layers of the Arctic Ocean, such as the Atlantic Water boundary current.
Keywords
Ekman Pumping,Sea Ice,Geostrophic Current,Overturning Circulation
Speaker
冷恒凌
自然资源部第二海洋研究所

Submission Author
冷恒凌 自然资源部第二海洋研究所
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Important Date
  • Conference Date

    May 05

    2023

    to

    May 08

    2023

  • Mar 31 2023

    Draft paper submission deadline

  • May 25 2023

    Registration deadline

Sponsored By
青年地学论坛理事会
中国科学院青年创新促进会地学分会
Organized By
武汉大学
中国科学院精密测量科学与技术创新研究院
中国地质大学(武汉)
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