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Impact of eddy-wind interaction on eddy demographics and phytoplankton community structure in a model of the North Atlantic Ocean

机译:涡-风相互作用对北大西洋海域涡流人口学和浮游植物群落结构的影响

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摘要

Two eddy-resolving (0.1°) physical-biological simulations of the North Atlantic Ocean are compared, one with the surface momentum flux computed only from wind velocities and the other using the difference between air and ocean velocity vectors. This difference in forcing has a significant impact on the intensities and relative number of different types of mesoscale eddies in the Sargasso Sea. Eddy/wind interaction significantly reduces eddy intensities and increases the number of mode-water eddies and "thinnies" relative to regular cyclones and anticyclones; it also modifies upward isopycnal displacements at the base of the euphotic zone, increasing them in the centers of mode water eddies and at the edges of cyclones, and decreasing them in the centers of cyclones. These physical changes increase phytoplankton growth rates and biomass in mode-water eddies, bringing the biological simulation into better agreement with field data. These results indicate the importance of including the eddy /wind interaction in simulations of the physics and biology of eddies in the subtropical North Atlantic. However, eddy intensities in the simulation with eddy/wind interaction are lower than observed, which suggests a decrease in horizontal viscosity or an increase in horizontal grid resolution will be necessary to regain the observed level of eddy activity.
机译:比较了北大西洋的两种涡旋分辨(0.1°)物理生物学模拟,一种是仅由风速计算得出的表面动量通量,另一种是利用空气和海洋速度矢量之间的差计算的。这种强迫上的差异对Sargasso海中不同类型的中尺度涡旋的强度和相对数量有重大影响。相对于常规旋风分离器和反旋风分离器,涡流/风的相互作用显着降低了涡流强度并增加了模式水涡流和“稀疏”的数量;它也改变了在常光区底部的向上等位线位移,在模态水涡旋中心和旋风分离器的边缘增加了它们的位移,在旋风分离器的中心减少了这些位移。这些物理变化增加了浮水涡流中浮游植物的生长速度和生物量,使生物学模拟与现场数据更好地吻合。这些结果表明,在亚热带北大西洋的涡旋物理学和生物学模拟中,必须包括涡旋/风相互作用。但是,在具有涡流/风相互作用的模拟中,涡流强度低于所观察到的强度,这表明必须降低水平粘度或增加水平网格分辨率,才能恢复到所观测到的涡流活动水平。

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