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The warmer the ocean surface the shallower the mixed layer. How much of this is true?

机译:海洋表面越暖混合层越浅。这多少是真的?

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摘要

Ocean surface warming is commonly associated with a more stratified, less productive, and less oxygenated ocean. Such an assertion is mainly based on consistent projections of increased near‐surface stratification and shallower mixed layers under global warming scenarios. However, while the observed sea surface temperature (SST) is rising at midlatitudes, the concurrent ocean record shows that stratification is not unequivocally increasing nor is MLD shoaling. We find that while SST increases at three study areas at midlatitudes, stratification both increases and decreases, and MLD deepens with enhanced deepening of winter MLDs at rates over 10 m  decade−1. These results rely on the estimation of several MLD and stratification indexes of different complexity on hydrographic profiles from long‐term hydrographic time‐series, ocean reanalysis, and Argo floats. Combining this information with estimated MLDs from buoyancy fluxes and the enhanced deepening/attenuation of the winter MLD trends due to changes in the Ekman pumping, MLD variability involves a subtle interplay between circulation and atmospheric forcing at midlatitudes. Besides, it is highlighted that the density difference between the surface and 200 m, the most widely used stratification index, should not be expected to reliably inform about changes in the vertical extent of mixing.
机译:海洋表面变暖通常与更分层,生产力较低和含氧量较低的海洋有关。这种断言主要是基于全球变暖情景下近地表分层增加和混合层较浅的一致预测。但是,虽然在中纬度观测到的海面温度(SST)升高,但同时发生的海洋记录表明,分层并没有明显增加,MLD浅滩也没有。我们发现,虽然中纬度的三个研究区域的海表温度增加,但分层都增加和减少,并且随着冬季MLD的加深程度增加,MLD加深,速度超过10μm十年 -1 。这些结果依赖于从长期水文时间序列,海洋再分析和Argo浮标对水文剖面进行的几种不同复杂度的MLD和分层指标的估计。将这些信息与浮力通量估计的MLD结合,以及由于Ekman抽水变化而导致的冬季MLD趋势的加深/衰减增强,MLD的可变性涉及中纬度环流与大气强迫之间的微妙相互作用。此外,要强调的是,不应期望表面和200 m(最广泛使用的分层指数)之间的密度差可靠地告知垂直混合程度的变化。

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