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Reduced North Atlantic Deep Water Coeval with the Glacial Lake Agassiz Freshwater Outburst

机译:冰河Agassiz淡水爆发减少了北大西洋深水时代

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An outstanding climate anomaly 8200 years before the present (B.P.) in the North Atlantic is commonly postulated to be the result of weakened overturning circulation triggered by a freshwater outburst. New stable isotopic and sedimentological records from a northwest Atlantic sediment core reveal that the most prominent Holocene anomaly in bottom-water chemistry and flow speed in the deep limb of the Atlantic overturning circulation begins at ~8.38 thousand years B.P., coeval with the catastrophic drainage of Lake Agassiz. The influence of Lower North Atlantic Deep Water was strongly reduced at our site for ~100 years after the outburst, confirming the ocean's sensitivity to freshwater forcing. The similarities between the timing and duration of the pronounced deep circulation changes and regional climate anomalies support a causal link.
机译:通常认为,北大西洋目前(B.P.)之前的8200年是一个异常的气候异常,其原因是淡水爆发引起的倾覆环流减弱。来自西北大西洋沉积物核心的新的稳定同位素和沉积学记录表明,大西洋深部底水化学和流速最显着的全新世异常倾覆环流始于〜8.38万年BP,与1978年的灾难性排水有关。阿加西兹湖。爆发后约100年,北大西洋低层深水的影响在我们的位置被大大降低,这证实了海洋对淡水强迫的敏感性。明显的深层环流变化的时间和持续时间与区域气候异常之间的相似性支持因果关系。

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