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The Annual Cycle of Upper-Ocean Potential Vorticity and Its Relationship to Submesoscale Instabilities

机译:上海潜在涡流的年度周期及其与提交尺度稳定性的关系

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摘要

The evolution of upper-ocean potential vorticity (PV) over a full year in a typical midocean area of the northeast Atlantic is examined using submesoscale- and mesoscale-resolving hydrographic and velocity measurements from a mooring array. A PV budget framework is applied to quantitatively document the competing physical processes responsible for deepening and shoaling the mixed layer. The observations reveal a distinct seasonal cycle in upper-ocean PV, characterized by frequent occurrences of negative PV within deep (up to about 350 m) mixed layers from winter to mid-spring, and positive PV beneath shallow (mostly less than 50 m) mixed layers during the remainder of the year. The cumulative positive and negative subinertial changes in the mixed layer depth, which are largely unaccounted for by advective contributions, exceed the deepest mixed layer by one order of magnitude, suggesting that mixed layer depth is shaped by the competing effects of destratifying and restratifying processes. Deep mixed layers are attributed to persistent atmospheric cooling from winter to mid-spring, which triggers gravitational instability leading to mixed layer deepening. However, on shorter time scales of days, conditions favorable to symmetric instability often occur as winds intermittently align with transient frontal flows. The ensuing submesoscale frontal instabilities are found to fundamentally alter upper-ocean turbulent convection, and limit the deepening of the mixed layer in the winter-to-mid-spring period. These results emphasize the key role of submesoscale frontal instabilities in determining the seasonal evolution of the mixed layer in the open ocean.
机译:使用来自系泊阵列的子尺度和Messcale分辨水文和速度测量来检查在东北大西洋的典型中面积的全年中海洋潜在涡度(PV)的演变。 PV预算框架应用于定量地记录负责加深和挖掘混合层的竞争物理过程。观察结果揭示了上海PV中的明显季节性循环,其特征在于,在冬季到中春天的深度(高达约350米)混合层频繁发生负面PV,浅(大多数小于50米)在一年中剩下的混合层。混合层深度的累积正和阴性子节变化,这在很大程度上是通过平面的贡献,超过最深的混合层的一个级,表明混合层深度是通过摧毁和雷可化过程的竞争效应而成的。深厚的层归因于从冬季到中簧的持续大气冷却,这触发了引力不稳定,导致混合层深化。然而,在较短的时间尺度上,随着瞬态正面流间歇地对齐,通常发生对对称不稳定性的条件。发现随后的基础尺度额外稳定性从根本上改变了上海湍流对流,并限制了春季到中期春季期间混合层的深化。这些结果强调了基础尺度额外不稳定性在确定开放海洋中混合层的季节性演变时的关键作用。

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