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Re-initiation of bottom water formation in the East Sea (Japan Sea) in a warming world

机译:在变暖的世界中重新开始东海(日本海)的底水形成

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The East Sea (Japan Sea), a small marginal sea in the northwestern Pacific, is ventilated deeply down to the bottom and sensitive to changing surface conditions. Addressing the response of this marginal sea to the hydrological cycle and atmospheric forcing would be helpful for better understanding present and future environmental changes in oceans at the global and regional scales. Here, we present an analysis of observations revealing a slowdown of the long-term deepening in water boundaries associated with changes of water formation rate. Our results indicate that bottom (central) water formation has been enhanced (reduced) with more (less) oxygen supply to the bottom (central) layer since the 2000s. This paper presents a new projection that allows a three-layered deep structure, which retains bottom water, at least until 2040, contrasting previous results. This projection considers recent increase of slope convections mainly due to the salt supply via air-sea freshwater exchange and sea ice formation and decrease of open-ocean convections evidenced by reduced mixed layer depth in the northern East Sea, resulting in more bottom water and less central water formations. Such vigorous changes in water formation and ventilation provide certain implications on future climate changes.
机译:东海(日本海)是西北太平洋中的一小片边缘海,其深层通风一直到底部,并且对不断变化的地表条件敏感。解决这种边缘海对水文循环和大气强迫的反应,将有助于更好地了解全球和区域尺度海洋当前和未来的环境变化。在这里,我们对观测结果进行分析,揭示与水形成速率变化相关的水边界长期深化的放缓。我们的结果表明,自2000年代以来,随着向底部(中央)层供应更多(更少)的氧气,底部(中央)水的形成得到了增强(减少)。本文提出了一种新的预测,该预测允许使用三层深层结构,该结构至少在2040年前都可以保留底部水,这与以前的结果形成了鲜明对比。该预测考虑了最近对流对流的增加,这主要是由于通过空气-海洋淡水交换和海冰形成而供应的盐以及减少了对流的对流,这由东海北部的混合层深度减小所证实,从而导致更多的底水而更少的中央水层。水的形成和通风的这种剧烈变化对未来的气候变化提供了一定的影响。

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