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Holocene dynamics in the Bering Strait inflow to the Arctic and the Beaufort Gyre circulation based on sedimentary records from the Chukchi Sea

机译:根据楚科奇海的沉积记录,白令海峡流入北极和博福特涡流的全新世动力学

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摘要

The Beaufort Gyre (BG) and the Bering Strait inflow (BSI) are important elements of the Arctic Ocean circulation system and major controls on the distribution of Arctic sea ice. We report records of the quartz / feldspar and chlorite / illite ratios in three sediment cores from the northern Chukchi Sea, providing insights into the long-term dynamics of the BG circulation and the BSI during the Holocene. The quartz / feldspar ratio, interpreted as a proxy of the BG strength, gradually decreased during the Holocene, suggesting a long-term decline in the BG strength, consistent with an orbitally controlled decrease in summer insolation. We propose that the BG rotation weakened as a result of the increasing stability of sea-ice cover at the margins of the Canada Basin, driven by decreasing insolation. Millennial to multi-centennial variability in the quartz / feldspar ratio (the BG circulation) is consistent with fluctuations in solar irradiance, suggesting that solar activity affected the BG strength on these timescales. The BSI approximation by the chlorite / illite record, despite a considerable geographic variability, consistently shows intensified flow from the Bering Sea to the Arctic during the middle Holocene, which is attributed primarily to the effect of higher atmospheric pressure over the Aleutian Basin. The intensified BSI was associated with decrease in sea-ice concentrations and increase in marine production, as indicated by biomarker concentrations, suggesting a major influence of the BSI on sea-ice and biological conditions in the Chukchi Sea. Multi-century to millennial fluctuations, presumably controlled by solar activity, were also identified in a proxy-based BSI record characterized by the highest age resolution.
机译:博福特涡(BG)和白令海峡入流(BSI)是北冰洋环流系统的重要组成部分,也是对北极海冰分布的主要控制。我们报告了楚科奇海北部三个沉积岩心中石英/长石和绿泥石/伊利石比的记录,从而提供了全新世期间BG循环和BSI长期动态的见解。石英/长石比被解释为BG强度的代表,在全新世期间逐渐降低,表明BG强度长期下降,与夏季日射的轨道控制下降一致。我们建议,由于日照量的减少,由于加拿大盆地边缘海冰覆盖物的稳定性增加,BG旋转减弱。石英/长石比(BG循环)的千年至百年变化与太阳辐照度的波动一致,表明太阳活动在这些时间尺度上影响了BG强度。尽管绿洲/伊利石记录的地理变化很大,但根据绿泥石/伊利石记录的BSI近似值始终显示,在全新世中期,白令海流向北极的流量增加,这主要归因于阿留申盆地较高气压的影响。如生物标志物浓度所表明的,BSI的增强与海冰浓度的降低和海洋生产的增加有关,这表明BSI对楚科奇海的海冰和生物条件具有重大影响。在以年龄分辨率最高为特征的基于代理的BSI记录中,还发现了可能由太阳活动控制的几百年至千年波动。

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