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Seasonality of the Physical and Biogeochemical Hydrography in the Inflow to the Arctic Ocean Through Fram Strait

机译:通过弗拉姆海峡流入北冰洋的物理和生物地球化学水文学的季节性

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Eastern Fram Strait and the shelf slope region north of Svalbard is dominated by the advection of warm, salty and nutrient-rich Atlantic Water (AW). This oceanic heat contributes to keeping the area relatively free of ice. The last years have seen a dramatic decrease in regional sea ice extent, which is expected to drive large increases in pelagic primary production and thereby changes in marine ecology and nutrient cycling. In a concerted effort, we conducted five cruises to the area in winter, spring, summer and fall of 2014, in order to understand the physical and biogeochemical controls of carbon cycling, for the first time from a year-round point of view. We document (1) the offshore location of the wintertime front between salty AW and fresher Surface Water in the ocean surface, (2) thermal convection of Atlantic Water over the shelf slope, likely enhancing vertical ?nutrient fluxes, and (3) the importance of ice melt derived upper ocean stratification for the spring bloom timing. Our findings strongly confirm the hypothesis that this ``Atlantification'', as it has been called, of the shelf slope area north of Svalbard resulting from the advection of AW alleviates both nutrient and light limitations at the same time, leading to increased pelagic primary productivity in this region.
机译:东弗拉姆海峡和斯瓦尔巴特群岛以北的大陆架斜坡地区以对流温暖,咸和富含营养的大西洋水(AW)为主。这种海洋热有助于保持该地区相对无冰。最近几年,区域海冰面积急剧减少,这有望推动远洋初级生产的大量增加,从而改变海洋生态和养分循环。在共同努力下,我们于2014年冬季,春季,夏季和秋季进行了五次巡游,以从全年的角度首次了解碳循环的物理和生物地球化学控制方法。我们记录了(1)冬季咸咸水和海洋表层较新鲜的地表水之间的冬季前沿的离岸位置,(2)大西洋水在陆架坡面上的热对流,可能会增加垂直营养通量,以及(3)重要性的冰融化导致了春季开花时间的上层海洋分层。我们的发现强有力地证实了这样的假设,即由于AW的平流而导致的斯瓦尔巴德群岛北部斜坡的这种``大西洋化''同时减轻了营养和光的限制,从而导致了上层浮游生物增加。该地区的生产力。

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