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Antarctic sea ice control on ocean circulation in present and glacial climates

机译:在当前和冰川气候中南极海冰对海洋环流的控制

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摘要

In the modern climate, the ocean below 2 km is mainly filled by waters sinking into the abyss around Antarctica and in the North Atlantic. Paleoproxies indicate that waters of North Atlantic origin were instead absent below 2 km at the Last Glacial Maximum, resulting in an expansion of the volume occupied by Antarctic origin waters. In this study we show that this rearrangement of deep water masses is dynamically linked to the expansion of summer sea ice around Antarctica. A simple theory further suggests that these deep waters only came to the surface under sea ice, which insulated them from atmospheric forcing, and were weakly mixed with overlying waters, thus being able to store carbon for long times. This unappreciated link between the expansion of sea ice and the appearance of a voluminous and insulated water mass may help quantify the ocean’s role in regulating atmospheric carbon dioxide on glacial–interglacial timescales. Previous studies pointed to many independent changes in ocean physics to account for the observed swings in atmospheric carbon dioxide. Here it is shown that many of these changes are dynamically linked and therefore must co-occur.
机译:在现代气候下,2公里以下的海洋主要被南极洲周围和北大西洋深渊的水淹没。古近代表明,在最后一次冰河期末最大距离小于2 km的情况下,北大西洋水域却没有水,导致南极水域所占的水量增加。在这项研究中,我们表明,深水团的这种重排与南极洲周围夏季海冰的膨胀动态相关。一个简单的理论进一步表明,这些深水仅在海冰下才到达地表,这使它们与大气强迫隔离开来,并与上覆水微弱地混合在一起,因此能够长期储存碳。海冰膨胀与大量绝缘水体的出现之间的这种未被理解的联系可能有助于量化海洋在冰河间时间尺度上调节大气二氧化碳的作用。先前的研究指出海洋物理学中的许多独立变化,以解释所观测到的大气二氧化碳的波动。此处显示,其中许多更改是动态链接的,因此必须同时发生。

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