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首页> 外文期刊>Journal of Physical Oceanography >Restratification at a California Current Upwelling Front. Part Ⅱ: Dynamics
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Restratification at a California Current Upwelling Front. Part Ⅱ: Dynamics

机译:在加利福尼亚州克制浓度的上升前的前线。第二部分:动态

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A coordinated multiplatform campaign collected detailed measurements of a restratifying surface intensified upwelling front within the California Current System. A companion paper outlined the evolution of the front, revealing the importance of lateral advection at tilting isopycnals and increasing stratification in the surface boundary layer with a buoyancy flux equivalent to 2000 W m(-2). Here, observations were compared with idealized models to explore the dynamics contributing to the stratification. A 2D model combined with a reduced form of the horizontal momentum equations highlight the importance of transient Ekman dynamics, turbulence, and thermal wind imbalance at modulating shear in the boundary layer. Specifically, unsteady frictional adjustment to the rapid decrease in wind stress created vertically sheared currents that advected horizontal gradients to increase vertical stratification on superinertial time scales. The magnitude of stratification depended on the strength of the horizontal buoyancy gradient. This enhanced stratification due to horizontal advection inhibited nighttime mixing that would have otherwise eroded stratification from the diurnal warm layer. This underscores the importance of near-surface lateral restratification for the upper ocean buoyancy budget on diel time scales.
机译:协调的多平台运动收集的详细测量在加利福尼亚州电流系统内加强了增强的升高前沿。伴随纸张概述了前方的演变,揭示了倾斜等离子体横向平流的重要性,并增加了与2000wm(-2)相当于浮力通量的表面边界层中的分层。这里,将观察结果与理想化模型进行比较,以探索有助于分层的动态。 2D模型与水平动量方程的减少形式结合突出了瞬态Ekman动态,湍流和在边界层中调制剪切时的热风不平衡的重要性。具体地,对风力应力的快速减小的不稳定摩擦调整产生了垂直剪切的电流,这方面方向水平梯度来提高横向时间尺度的垂直分层。分层的大小依赖于水平浮力梯度的强度。由于水平前进引起的这种增强的分层抑制了从昼夜暖层中侵蚀分层的夜间混合。这强调了在Diel时间尺度上上海浮力预算的近似海洋浮力预算的重要性。

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