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Winter storms accelerate the demise of sea ice in the Atlantic sector of the Arctic Ocean

机译:冬季风暴加快了北冰洋大西洋地区海冰的消亡

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摘要

A large retreat of sea-ice in the ‘stormy’ Atlantic Sector of the Arctic Ocean has become evident through a series of record minima for the winter maximum sea-ice extent since 2015. Results from the Norwegian young sea ICE (N-ICE2015) expedition, a five-month-long (Jan-Jun) drifting ice station in first and second year pack-ice north of Svalbard, showcase how sea-ice in this region is frequently affected by passing winter storms. Here we synthesise the interdisciplinary N-ICE2015 dataset, including independent observations of the atmosphere, snow, sea-ice, ocean, and ecosystem. We build upon recent results and illustrate the different mechanisms through which winter storms impact the coupled Arctic sea-ice system. These short-lived and episodic synoptic-scale events transport pulses of heat and moisture into the Arctic, which temporarily reduce radiative cooling and henceforth ice growth. Cumulative snowfall from each sequential storm deepens the snow pack and insulates the sea-ice, further inhibiting ice growth throughout the remaining winter season. Strong winds fracture the ice cover, enhance ocean-ice-atmosphere heat fluxes, and make the ice more susceptible to lateral melt. In conclusion, the legacy of Arctic winter storms for sea-ice and the ice-associated ecosystem in the Atlantic Sector lasts far beyond their short lifespan.
机译:自2015年以来,一系列关于冬季最大海冰范围的最低记录,使北冰洋“暴风雨”的大西洋海域海冰大量退缩变得明显。挪威年轻海冰(N-ICE2015)探险队是斯瓦尔巴特群岛北部第一年和第二年冰袋中一个长达五个月(1月至6月)的流冰站,展示了该地区的海冰经常受到冬季风暴的影响。在这里,我们综合了跨学科的N-ICE2015数据集,包括对大气,雪,海冰,海洋和生态系统的独立观测。我们以最近的结果为基础,并说明了冬季风暴影响耦合的北极海冰系统的不同机制。这些短暂且短暂的天气尺度事件将热量和水分的脉冲传输到北极,这暂时减少了辐射冷却并因此减少了冰的生长。每次连续暴风雪造成的累积降雪加深了雪堆并使海冰绝缘,进一步抑制了整个剩余冬季的冰增长。强风使冰盖破裂,增加了海冰-大气的热通量,并使冰更易于横向融化。总而言之,北极冬季风暴给大西洋沿岸地区的海冰和与冰相关的生态系统留下的遗产远远超过了它们短暂的寿命。

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