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夏季上层海洋分层和混合层深度增加。

Summertime increases in upper-ocean stratification and mixed-layer depth.

机构信息

Sorbonne Université, CNRS/IRD/MNHN, LOCEAN, IPSL, Paris, France.

Institute for Marine and Antarctic Studies, University of Tasmania, Hobart, Tasmania, Australia.

出版信息

Nature. 2021 Mar;591(7851):592-598. doi: 10.1038/s41586-021-03303-x. Epub 2021 Mar 24.

Abstract

The surface mixed layer of the world ocean regulates global climate by controlling heat and carbon exchange between the atmosphere and the oceanic interior. The mixed layer also shapes marine ecosystems by hosting most of the ocean's primary production and providing the conduit for oxygenation of deep oceanic layers. Despite these important climatic and life-supporting roles, possible changes in the mixed layer during an era of global climate change remain uncertain. Here we use oceanographic observations to show that from 1970 to 2018 the density contrast across the base of the mixed layer increased and that the mixed layer itself became deeper. Using a physically based definition of upper-ocean stability that follows different dynamical regimes across the global ocean, we find that the summertime density contrast increased by 8.9 ± 2.7 per cent per decade (10-10 per second squared per decade, depending on region), more than six times greater than previous estimates. Whereas prior work has suggested that a thinner mixed layer should accompany a more stratified upper ocean, we find instead that the summertime mixed layer deepened by 2.9 ± 0.5 per cent per decade, or several metres per decade (typically 5-10 metres per decade, depending on region). A detailed mechanistic interpretation is challenging, but the concurrent stratification and deepening of the mixed layer are related to an increase in stability associated with surface warming and high-latitude surface freshening, accompanied by a wind-driven intensification of upper-ocean turbulence. Our findings are based on a complex dataset with incomplete coverage of a vast area. Although our results are robust within a wide range of sensitivity analyses, important uncertainties remain, such as those related to sparse coverage in the early years of the 1970-2018 period. Nonetheless, our work calls for reconsideration of the drivers of ongoing shifts in marine primary production, and reveals stark changes in the world's upper ocean over the past five decades.

摘要

世界海洋的表层混合层通过控制大气和海洋内部之间的热量和碳交换来调节全球气候。混合层还通过容纳海洋中大部分初级生产力并为深海层的充氧提供渠道来塑造海洋生态系统。尽管混合层具有这些重要的气候和生命支持作用,但在全球气候变化时代,混合层可能发生的变化仍然不确定。在这里,我们使用海洋观测结果表明,从 1970 年到 2018 年,混合层底部的密度对比增加了,混合层本身也变深了。使用一种基于物理的上层海洋稳定性定义,该定义遵循全球海洋不同的动力机制,我们发现夏季的密度对比每十年增加 8.9±2.7%(取决于区域,每十秒平方每秒 10-10),比以前的估计高出六倍多。尽管之前的工作表明,较薄的混合层应该伴随着分层的上层海洋,但我们发现,夏季混合层反而每十年加深 2.9±0.5%,或每十年几米(取决于区域,通常为 5-10 米)。详细的力学解释具有挑战性,但混合层的同时分层和加深与与表面变暖相关的稳定性增加以及高纬度表面淡化有关,同时还伴随着上层海洋湍流的风驱动强化。我们的发现基于一个复杂的数据集,该数据集对广阔区域的覆盖并不完整。尽管我们的结果在广泛的敏感性分析范围内是稳健的,但仍存在重要的不确定性,例如在 1970-2018 年期间早期数据覆盖不足的问题。尽管如此,我们的工作呼吁重新考虑正在进行的海洋初级生产力变化的驱动因素,并揭示了过去五十年世界上层海洋的明显变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac8e/7610469/e711f428d375/EMS115370-f006.jpg

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