斯瓦尔巴群岛斯托夫峡湾的浓水生成,来自 1 年时间序列观测和一个简单模型:变暖的北极地区的多水层是否在向深海输出热量?

IF 3.3 2区 地球科学 Q1 OCEANOGRAPHY Journal of Geophysical Research-Oceans Pub Date : 2024-09-27 DOI:10.1029/2024JC020878
Frédéric Vivier, Antonio Lourenço, Ragnheid Skogseth, Ilona Goszczko, Elisabeth Michel, Clément Rousset, Pascale Bouruet-Aubertot, Yannis Cuypers, Bruno Lansard, Claire Waelbroeck
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引用次数: 0

摘要

通过系泊观测、根据卫星观测结果推导的多谷模型以及原始的富含卤素的大陆架水(BSW)生成模型,分析了2016-2017年冬季斯托夫峡湾高密度富含卤素的大陆架水(BSW)的形成过程。冰期比平均水平短两个月,但形成了 44.2 km 3 ${\text{km}}^{3}$的海冰,与 2000 年代中期巴伦支海大西洋化之前的估计值一致:更薄、更脆弱的冰层可能有利于海冰的开口和裂冰的生成。巴伦支海咸水样本的产量很大,相当于 0.042 Sv 的年平均输送量,大于之前的估计值。冰的大量产生是由于盐度更高的源水对冰湖进行了预调节,比 2005 年之前的数值高出 0.37。在西斯匹次卑尔根陆架斜坡上的水文断面至 750 米处观测到了 BSW 溢流,从而进入了挪威海深水层。由于斯多夫约尔德伦纳(Storfjordrenna)夹带了较暖的海水,其核心温度比 2005 年之前的值高出约 1 ° $1{}^{\circ}$ C,这表明巴伦支海过剩的表层热量有一部分可能被输出到深海。总之,我们的研究结果表明,至少目前,斯托夫峡湾多水体的致密水形成可能不会受到巴伦支海大西洋化的阻碍,甚至可能暂时受到盐度更高的源水的青睐。然而,冬春季节大气的异常变暖可能会破坏水的生成,就像一年前观察到的那样。
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Dense Water Production in Storfjorden, Svalbard, From a 1-Year Time Series of Observations and a Simple Model: Are Polynyas in a Warming Arctic Exporting Heat to the Deep Ocean?

The formation of dense Brine-enriched Shelf Water (BSW) in Storfjorden is analyzed during Winter 2016–2017 from mooring observations, a polynya model nudged to satellite observations, and an original BSW production model. The ice season was two months shorter than average, yet 44.2  km 3 ${\text{km}}^{3}$ of sea ice were formed, in line with estimates for the period preceding the atlantification of the Barents Sea in the mid-2000s: A thinner, more fragile ice may favor polynya openings and frazil ice production. A saline specimen of BSW was produced in large volumes, corresponding to an annual mean transport of 0.042 Sv, larger than previous estimates. The important production is due to the preconditioning of the polynya with a more saline source water, exceeding the pre-2005 values by 0.37. The BSW overflow was observed on the West Spitsbergen shelf slope from hydrographic sections down to 750 m, thus entering the Norwegian Sea Deep Water layer. Its core temperature was about 1 ° $1{}^{\circ}$ C warmer than the pre-2005 values owing to the entrainment of a warmer water in Storfjordrenna, suggesting that a part of the excess surface heat of the Barents Sea could be exported into the deep ocean. Overall our results suggest that dense water formation in the Storfjorden polynya may not, at least for now, be hampered by the atlantification of the Barents Sea, and perhaps even temporarily favored by the more saline source water. Anomalous atmospheric warming during the Winter-Spring may however disrupt the production, as was observed 1 year before.

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来源期刊
Journal of Geophysical Research-Oceans
Journal of Geophysical Research-Oceans Earth and Planetary Sciences-Oceanography
CiteScore
7.00
自引率
13.90%
发文量
429
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