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A modification of the classical Ekman model accounting for the Stokes drift and stratification effects

机译:对经典Ekman模型的修正,该修正考虑了斯托克斯漂移和分层效应

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摘要

A modification of the classical Ekman model of oceanic wind-driven currents including the Stokes drift and stratification effects is discussed. The modification is formulated as an application of turbulence mechanics accounting for the curvature effect of velocity fluctuation streamlines. It is shown that similar to the Stokes drift effect, the presence of a density jump layer (pycnocline) decreases the veering of the flow velocity vector at the surface from the direction of the wind stress. It is shown also that in the pycnocline the decrease of the norm of the velocity vector as well as its rotation with depth is smaller than in the regions adjacent to the pycnocline. If the Stokes drift and stratification effects are neglected, the model reduces to the classical Ekman solution with the coefficient of the turbulent shear viscosity replaced by an effective viscosity coefficient. The vertical distributions of velocity predicted by the modified model are compared with the velocity data measured in the Drake Passage and within the Long-Term Upper Ocean Study (LOTUS) in the North Atlantic.
机译:讨论了经典的埃克曼模型的海洋风驱动流的修改,包括斯托克斯漂移和分层效应。该修改被公式化为考虑了速度波动流线的曲率效应的湍流力学应用。结果表明,类似于斯托克斯漂移效应,密度跃变层(密线)的存在降低了表面上风速从风应力方向的转向。还显示出在比可可啉中,速度矢量的范数的减小以及其随深度的旋转小于在比可可霉素附近的区域中。如果忽略了斯托克斯漂移和分层效应,则模型将简化为经典Ekman解,用有效剪切系数代替湍流剪切粘度的系数。将修改后的模型预测的垂直速度分布与在Drake通道中以及北大西洋的长期高空研究(LOTUS)中测得的速度数据进行比较。

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