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Stationary Rossby waves dominate subduction of anthropogenic carbon in the Southern Ocean

机译:固定的Rossby波主导着南洋人为碳的俯冲

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摘要

The Southern Ocean has taken up more than 40% of the total anthropogenic carbon (Cant) stored in the oceans since the preindustrial era, mainly in subantarctic mode and intermediate waters (SAMW-AAIW). However, the physical mechanisms responsible for the transfer of Cant into the ocean interior remain poorly understood. Here, we use high resolution (1/10°) ocean simulations to investigate these mechanisms at the SAMW-AAIW subduction hotspots. Mesoscale Stationary Rossby Waves (SRWs), generated where the Antarctic Circumpolar Current interacts with topography, make the dominant contribution to the Cant transfer in SAMW-AAIW in the Indian and Pacific sectors (66% and 95% respectively). Eddy-resolving simulations reproduce the observed Cant sequestration in these layers, while lower spatial resolution models, that do not reproduce SRWs, underestimate the inventory of Cant in these layers by 40% and overestimate the storage in denser layers. A key implication is that climate model simulations, that lack sufficient resolution to represent sequestration by SRWs, are therefore likely to overestimate the residence time of Cant in the ocean, with implications for simulated rates of climate change.
机译:自工业化前时代以来,南大洋已经占据了海洋中人类活动碳总量(Cant)的40%以上,主要是在亚极模式和中间水域(SAMW-AAIW)。但是,对于将Cant转移到海洋内部的物理机制仍然知之甚少。在这里,我们使用高分辨率(1/10°)海洋模拟研究了SAMW-AAIW俯冲热点的这些机制。在南极绕极洋流与地形相互作用的地方产生了中尺度的固定式Rossby波(SRW),对印度和太平洋地区的SAMW-AAIW中的Cant传输起了主要作用(分别为66%和95%)。涡旋模拟再现了在这些层中观察到的Cant固存,而不能再现SRW的较低空间分辨率模型却低估了这些层中Cant的存量40%,并高估了更密集层中的存储量。一个关键的暗示是,气候模型模拟缺乏足够的分辨率来表示SRW的固存,因此可能会高估Cant在海洋中的停留时间,从而影响模拟的气候变化速率。

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