541 / 2024-09-18 11:20:07
Alternate Rotating Layered Circulation in Response to Extrinsic and Intrinsic Forcing in the Japan Sea
Japan Sea,rotating layered circulation,vorticity dynamics
Abstract Accepted
Junlu LI / Sun Yat-sen University
Jianping Gan / The Hong Kong University of Science and Technology
Characterizing circulation pattern in marginal sea and diagnosing its complex forcing mechanism between intrinsic flow-topography interaction and extrinsic flux from adjacent open seas remain challenge. Using observations, numerical modeling and novel Stoke-based layer-integrated vorticity equation (LIVE) dynamics in the typical marginal Japan Sea (JS), we, for the first time, discovered alternating cyclonic, anti-cyclonic, and cyclonic circulation in the upper (0-150 m), middle (150-250 m), and bottom (>250 m) layers of the JS, respectively. We diagnosed that besides vorticity input from wind stress curl in the upper layer, the lateral planetary vorticity fluxes from inflow/outflow through the straits surrounding the JS lead to vortex stretching in all layers and extrinsically control the structure of the layered circulation. The joint effects of baroclinicity and relief (JEBAR) arising from flow–topography interaction is an intrinsic dynamic response to the extrinsic forcing and dynamically shapes the layered circulation. Based on Stokes circulation theorem, this study characterizes the layered circulation pattern and develops LIVE dynamics to effectively identify intrinsic and extrinsic forcing mechanisms for the layered circulation in the JS and other marginal seas.
Important Date
  • Conference Date

    Jan 13

    2025

    to

    Jan 17

    2025

  • Sep 27 2024

    Draft paper submission deadline

  • Feb 17 2025

    Registration deadline

Sponsored By
State Key Laboratory of Marine Environmental Science, Xiamen University
Organized By
State Key Laboratory of Marine Environmental Science, Xiamen University
Department of Earth Sciences, National Natural Science Foundation of China
Contact Information