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Circumpolar Mapping of Antarctic Coastal Polynyas and Landfast Sea Ice: Relationship and Variability

机译:南极沿海波利亚尼亚和陆上海冰的极极作图:关系和变异性

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摘要

Sinking of dense water from Antarctic coastal polynyas produces Antarctic Bottom Water (AABW), which is the densest water in the global overturning circulation and is a key player in climate change as a significant sink for heat and carbon dioxide. Very recent studies have suggested that landfast sea ice (fast ice) plays an important role in the formation and variability of the polynyas and possibly AABW. However, they have been limited to regional and case investigations only. This study provides the first coincident circumpolar mapping of Antarctic coastal polynyas and fast ice. The map reveals that most of the polynyas are formed on the western side of fast ice, indicating an important role of fast ice in the polynya formation. Winds diverging from a boundary comprising both coastline and fast ice are the primary determinant of polynya formation. The blocking effect of fast ice on westward sea ice advection by the coastal current would be another key factor. These effects on the variability in sea ice production for 13 major polynyas are evaluated quantitatively. Furthermore, it is demonstrated that a drastic change in fast ice extent, which is particularly vulnerable to climate change, causes dramatic changes in the polynyas and possibly AABW formation that can potentially contribute to further climate change. These results suggest that fast ice and precise polynya processes should be addressed by next-generation models to produce more accurate climate projections. This study provides the boundary and validation data of fast ice and sea ice production for such models.
机译:下沉南极沿海多产的浓水会产生南极底水(AABW),它是全球翻转循环中最稠密的水,并且是气候变化的主要参与者,是热量和二氧化碳的重要汇入点。最近的研究表明,陆生海冰(快速冰)在polynyas以及可能的AABW的形成和变异中起着重要作用。但是,它们仅限于区域调查和案例调查。这项研究提供了南极沿海多年生多面体和快速冰的第一个同时的绕极图。该图显示,大多数polynyas形成在快冰的西侧,表明快冰在polynya形成中的重要作用。风从包括海岸线和快速冰的边界发散是决定多年生植物形成的主要因素。快速冰对沿海海流对西海冰平流的阻挡作用将是另一个关键因素。定量评估了这些对13种主要poly虫在海冰生产中变异性的影响。此外,事实证明,速冻程度的急剧变化特别容易受到气候变化的影响,导致多睡鸟的剧烈变化,甚至可能导致AABW的形成发生巨大变化,从而有可能进一步加剧气候变化。这些结果表明,下一代模型应该解决快速冰和精确的多年生过程,以产生更准确的气候预测。这项研究为此类模型提供了快速冰和海冰生产的边界和验证数据。

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