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Note on the Rate of Restratification in the Baroclinic Spindown of Fronts

机译:注意前面斜压下降中的再定律率

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This paper revisits how the restratifying buoyancy flux w 0 b 0 generated by baroclinic mixed layer instabilities depends on environmental conditions. The frontal spindown is shown to produce buoyancy fluxes that increase significantly beyond the previously proposed and widely used scaling w'b;; fL 2 H2 (f is the Coriolis parameter, L is the geostrophic shear, andHis the mixed layer depth), irrespective of whether the initial front is broad or narrow. This increase occurs after the initial phase of the nonlinear evolution, when the baroclinic eddies grow in size and develop velocities significantly in excess of the scaling assumption V; LH. Implications for parameterizing the restratification caused by baroclinic mixed layer instabilities in coarseresolution models are discussed.
机译:本文回顾了斜压混合层不稳定性所产生的重新确定浮力通量w 0 b 0如何取决于环境条件。额叶旋转下降表明产生的浮力通量大大增加,超过了先前提出的和广泛使用的比例尺。 fL 2 H2(f是科里奥利参数,L是地转剪切,其混合层深度),无论初始前沿是宽还是窄。这种增加发生在非线性演化的初始阶段之后,此时斜压涡流的尺寸增大,并且形成的速度明显超过缩放假设V; LH。讨论了在粗分辨率模型中参数化由斜压混合层不稳定性引起的再定性的含义。

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