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北爱奥尼亚海在无风影响下长期海洋环流反转的实验证据。

Experimental evidence of long-term oceanic circulation reversals without wind influence in the North Ionian Sea.

机构信息

University Ca' Foscari of Venice, Dept. of Environmental Sciences, Informatics and Statistics, Via Torino 155, 30172, Mestre, Italy.

Istituto Nazionale di Oceanografia e di Geofisica Sperimentale - OGS, Borgo Grotta Gigante 42/C - 34010, Sgonico (TS), Italy.

出版信息

Sci Rep. 2020 Feb 5;10(1):1905. doi: 10.1038/s41598-020-57862-6.

Abstract

Under the emerging features of interannual-to-decadal ocean variability, the periodical reversals of the North Ionian Gyre (NIG), driven mostly by the mechanism named Adriatic-Ionian Bimodal Oscillating System (BiOS), are known as impacting on marine physics and biogeochemistry and potentially influencing short-term regional climate predictability in the Eastern Mediterranean. Whilst it has been suggested that local wind forcing cannot explain such variability, aspects of the alternative hypothesis indicating that NIG reversals mainly arises from an internal ocean feedback mechanism alone remain largely debated. Here we demonstrate, using the results of physical experiments, performed in the world's largest rotating tank and numerical simulations, that the main observed feature of BiOS, i.e., the switch of polarity of the near-surface circulation in the NIG, can be induced by a mere injection of dense water on a sloping bottom. Hence, BiOS is a truly oceanic mode of variability and abrupt polarity changes in circulation can arise solely from extreme dense water formation events.

摘要

在年际到年代际海洋变率的新特征下,北爱奥尼亚旋流(NIG)的周期性反转,主要由称为亚得里亚-爱奥尼亚双模态振荡系统(BiOS)的机制驱动,被认为对海洋物理学和生物地球化学有影响,并可能影响东地中海的短期区域气候可预测性。虽然有人认为局部风强迫不能解释这种可变性,但表明 NIG 反转主要是由内部海洋反馈机制引起的替代假设的某些方面仍然存在很大争议。在这里,我们使用在世界上最大的旋转水槽中进行的物理实验和数值模拟的结果表明,BiOS 的主要观测特征,即 NIG 近表面环流的极性转换,可以仅仅通过在倾斜底部注入密集水来诱导。因此,BiOS 是一种真正的海洋变率模式,循环的突然极性变化仅能由极端密集水形成事件引起。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8be/7002567/6b08d5a4e32d/41598_2020_57862_Fig1_HTML.jpg

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