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Surface and deep ocean coupling in the subpolar North Atlantic during the last 230 years

机译:在过去的230年中,北极亚极地表和深海耦合

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The subpolar North Atlantic Ocean (SPNA) is of key importance for modulating the climate of NW Europe because of heat loss to the atmosphere from the North Atlantic Current. Although hydrographic properties of the surface SPNA vary on interannual to multidecadal timescales, hydrographic time series scarcely extend back beyond the 1950s. We present a 230 year long record of SPNA surface conditions reconstructed from a very high accumulation rate core that also registers changes in deep flow speed in the Iceland Basin. A lagged correlation is observed between the records of deep flow speed and stable oxygen isotopic composition of the surface SPNA (δ~(18)O_w), with strongest correlation when the paleoflow speed record leads by 15-20 years. This offset may to some extent reflect size-selective biological mixing of the sediment. Nonetheless, these records reveal a decadal-scale coupling between surface and deep ocean variability over the past 230 years, possibly driven by the North Atlantic Oscillation, with implications for North Atlantic circulation and climate.
机译:亚极北大西洋(SPNA)由于北大西洋洋流向大气的热损失而对调节欧洲西北部的气候至关重要。尽管表面SPNA的水文特性在年际至数十年尺度上变化,但水文时间序列几乎无法追溯到1950年代以后。我们目前有230年的SPNA地表记录,该记录是由一个非常高的堆积速率岩心重建而成的,该岩心也记录了冰岛盆地深层流速的变化。在深流速度的记录和表面SPNA的稳定氧同位素组成(δ〜(18)O_w)之间观察到滞后的相关性,当古流速记录领先15-20年时,相关性最强。该偏移量在某种程度上可以反映沉积物的尺寸选择性生物混合。但是,这些记录揭示了过去230年中地表和深海变化之间的年代际尺度耦合,这可能是由北大西洋涛动驱动的,对北大西洋的环流和气候有影响。

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