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Episodic reductions in bottom-water currents since the last ice age

机译:自上次冰河时期以来,底流的减少

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Past changes in the freshwater balance of the surface North Atlantic Ocean are thought to have influenced the rate of deep-water formation, and consequently climate(1,2). Although water-mass proxies are generally consistent with an impact of freshwater input on meridional overturning circulation(3), there has been little dynamic evidence to support this linkage. Here we present a 25,000 year record of variations in sediment grain size from south of Iceland, which indicates vigorous bottom-water currents during both the last glacial maximum and the Holocene period. Together with reconstructions of North Atlantic water-mass distribution, vigorous bottom currents suggest a shorter residence time of northern-source waters during the last glacial maximum, relative to the Holocene period. The most significant reductions in flow strength occur during periods that have been associated with freshening of the surface North Atlantic. The short-term deglacial oscillations in bottom current strength are closely coupled to changes in Greenland air temperature, with a minimum during the Younger Dryas cold reversal and a maximum at the time of rapid warming at the onset of the Holocene. Our results support a strong connection between ocean circulation and rapid climate change.
机译:过去北大西洋海表的淡水平衡的变化被认为影响了深水形成的速率,进而影响了气候(1,2)。尽管水质代理通常与淡水输入对子午翻转环流的影响一致(3),但几乎没有动态证据支持这种联系。在这里,我们呈现了一个来自冰岛南部的25,000年沉积物粒径变化的记录,这表明在最后一次冰川最大期和全新世时期,剧烈的底水流。与北大西洋水质分布的重建一起,剧烈的海流表明,相对于全新世时期,在最后一次冰川最大时期,北源水域的停留时间更短。流动强度的最显着降低发生在与北大西洋表面新鲜相关的时期。底部电流强度的短期冰期振荡与格陵兰岛空气温度的变化紧密相关,在全新世初期,在Younger Dryas冷逆转期间最小,而在快速变暖时最大。我们的结果支持海洋环流与快速气候变化之间的紧密联系。

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