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Glacial lake drainage in Patagonia (13-8 kyr) and response of the adjacent Pacific Ocean

机译:巴塔哥尼亚的冰川湖排水(13-8年)和邻近太平洋的响应

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摘要

Large freshwater lakes formed in North America and Europe during deglaciation following the Last Glacial Maximum. Rapid drainage of these lakes into the Oceans resulted in abrupt perturbations in climate, including the Younger Dryas and 8.2 kyr cooling events. In the mid-latitudes of the Southern Hemisphere major glacial lakes also formed and drained during deglaciation but little is known about the magnitude, organization and timing of these drainage events and their effect on regional climate. We use 16 new single-grain optically stimulated luminescence (OSL) dates to define three stages of rapid glacial lake drainage in the Lago General Carrera/Lago Buenos Aires and Lago Cohrane/Pueyrredón basins of Patagonia and provide the first assessment of the effects of lake drainage on the Pacific Ocean. Lake drainage occurred between 13 and 8 kyr ago and was initially gradual eastward into the Atlantic, then subsequently reorganized westward into the Pacific as new drainage routes opened up during Patagonian Ice Sheet deglaciation. Coupled ocean-atmosphere model experiments using HadCM3 with an imposed freshwater surface “hosing” to simulate glacial lake drainage suggest that a negative salinity anomaly was advected south around Cape Horn, resulting in brief but significant impacts on coastal ocean vertical mixing and regional climate.
机译:在最后一次冰期最大值之后的冰消期,北美和欧洲形成了大型的淡水湖泊。这些湖泊迅速排入海洋,导致了气候的突然扰动,包括Younger Dryas和8.2 kyr的降温事件。在南半球的中纬度地区,主要的冰川湖也在冰消期间形成并流失,但对这些流失事件的大小,组织和时间以及它们对区域气候的影响知之甚少。我们使用16个新的单颗粒光学激发发光(OSL)日期来定义巴塔哥尼亚的Lago General Carrera / Lago Buenos Aires和Lago Cohrane /Pueyrredón盆地的快速冰川湖排水的三个阶段,并首次评估了湖泊的影响太平洋上的排水。湖泊排水发生在13至8年之前,最初是逐渐向东进入大西洋,然后随着巴塔哥尼亚冰盖冰消融期间开辟了新的排水路线,向西重组为太平洋。结合使用HadCM3和强加的淡水表层“浇筑”来模拟冰川湖排水的海洋-大气模型实验表明,在合恩角附近向南平流了负盐度异常,对沿海海洋垂直混合和区域气候产生了短暂但重要的影响。

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