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首页> 外文期刊>Nature Communications >Deep-water circulation changes lead North Atlantic climate during deglaciation
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Deep-water circulation changes lead North Atlantic climate during deglaciation

机译:深水循环变化在冰消融化期间导致北大西洋气候

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Constraining the response time of the climate system to changes in North Atlantic Deep Water (NADW) formation is fundamental to improving climate and Atlantic Meridional Overturning Circulation predictability. Here we report a new synchronization of terrestrial, marine, and ice-core records, which allows the first quantitative determination of the response time of North Atlantic climate to changes in high-latitude NADW formation rate during the last deglaciation. Using a continuous record of deep water ventilation from the Nordic Seas, we identify a ~400-year lead of changes in high-latitude NADW formation ahead of abrupt climate changes recorded in Greenland ice cores at the onset and end of the Younger Dryas stadial, which likely occurred in response to gradual changes in temperature- and wind-driven freshwater transport. We suggest that variations in Nordic Seas deep-water circulation are precursors to abrupt climate changes and that future model studies should address this phasing.
机译:限制气候系统对北大西洋深水(NADW)形成变化的响应时间,对于改善气候和大西洋经向翻转循环的可预测性至关重要。在这里,我们报告了陆地,海洋和冰芯记录的新同步,从而可以首次定量确定北大西洋气候对最后一次冰消期间高纬度NADW形成速率变化的响应时间。利用来自北欧海域的深水通风的连续记录,我们确定了在格陵兰年轻冰期开始和结束时格陵兰冰芯中记录到的突然气候变化之前,高纬度NADW形成变化的约400年前兆,这可能是由于温度和风驱动的淡水运输逐渐变化而发生的。我们建议北欧海域深水环流的变化是突然的气候变化的先兆,未来的模型研究应解决这一阶段。

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