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Numerical Study on the Velocity Structure around Tidal Fronts in the Yellow Sea 被引量:6

黄海夏季潮汐锋区环流的数值研究(英文)
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摘要 The velocity components across tidal fronts are examined using the Blumberg and Mellor 3-D nonlinear numerical coastal circulation model incorporated with the Mellor and Yamada level 2.5 turbulent closure model based on the reasonable model output of the M<SUB>2</SUB> tide and density residual currents. In the numerical experiments, upwelling motion appears around all the fronts with different velocity structures, accounting for surface cold water around the fronts. The experiments also suggest that the location and formation of fronts are closely related to topography and tidal mixing, as is the velocity structure around the front. The velocity components across tidal fronts are examined using the Blumberg and Mellor 3-D nonlinear numerical coastal circulation model incorporated with the Mellor and Yamada level 2.5 turbulent closure model based on the reasonable model output of the M<SUB>2</SUB> tide and density residual currents. In the numerical experiments, upwelling motion appears around all the fronts with different velocity structures, accounting for surface cold water around the fronts. The experiments also suggest that the location and formation of fronts are closely related to topography and tidal mixing, as is the velocity structure around the front.
出处 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2003年第3期453-460,共8页 大气科学进展(英文版)
基金 the Chinese Academy of Sciences(No.131,100 tal-ents project),the National Key Fundamental DevelopingProject(No.G19990437-02,-08) and the National Natu-ral Science Foundation of China(No.49976032 and No.49928605).
关键词 3-D velocity around tidal fronts tidal mixing TOPOGRAPHY 3-D velocity around tidal fronts tidal mixing topography
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