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Meltwater routing and the Younger Dryas

机译:融水路线和年轻树妖

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The Younger Dryas-the last major cold episode on Earth-is generally considered to have been triggered by a meltwater flood into the North Atlantic. The prevailing hypothesis, proposed by Broecker et al. [1989 Nature 341:318-321] more than two decades ago, suggests that an abrupt rerouting of Lake Agassiz overflow through the Great Lakes and St. Lawrence Valley inhibited deep water formation in the subpolar North Atlantic and weakened the strength of the Atlantic Meridional Overturning Circulation (AMOC). More recently, Tarasov and Peltier [2005 Nature 435:662-665] showed that meltwater could have discharged into the Arctic Ocean via the Mackenzie Valley ~4,000 km northwest of the St. Lawrence outlet. Here we use a sophisticated, high-resolution, ocean sea-ice model to study the delivery of meltwater from the two drainage outlets to the deep water formation regions in the North Atlantic. Unlike the hypothesis of Broecker et al., freshwater from the St. Lawrence Valley advects into the subtropical gyre -3,000 km south of the North Atlantic deep water formation regions and weakens the AMOC by <15%. In contrast, narrow coastal boundary currents efficiently deliver meltwater from the Mackenzie Valley to the deep water formation regions of the subpolar North Atlantic and weaken the AMOC by >30%. We conclude that meltwater discharge from the Arctic, rather than the St. Lawrence Valley, was more likely to have triggered the Younger Dryas cooling.
机译:人们普遍认为,年轻的树蛙(Younger Dryas)是地球上最后一次主要的寒冷天气,通常是由于北大西洋融水洪水引发的。 Broecker等人提出的普遍假设。 [1989 Nature 341:318-321]早在二十多年前,就表明阿格西兹湖突然穿越大湖和圣劳伦斯河谷的路线改道抑制了北大西洋次极地的深水形成,并削弱了大西洋子午线的强度。倾覆循环(AMOC)。最近,Tarasov和Peltier [2005 Nature 435:662-665]表明,融水可能已经通过Mackenzie谷向圣劳伦斯出水口西北约4,000 km排放到北冰洋。在这里,我们使用复杂的高分辨率海洋海冰模型研究融化水从两个排水口到北大西洋深水形成区域的输送。与Broecker等人的假设不同,圣劳伦斯河谷的淡水汇入北大西洋深水形成区以南-3,000 km的亚热带环流,使AMOC减弱了<15%。相反,狭窄的沿海边界流有效地将熔融水从Mackenzie谷输送到北极亚极大陆的深水形成区域,并使AMOC减弱30%以上。我们得出的结论是,从北极而不是圣劳伦斯河谷排放的融化水更有可能触发了Younger Dryas的降温。

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