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The nature of millennial-scale climate variability during the past two glacial periods

机译:过去两个冰川期千禧年尺度气候变化的性质

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During the last glacial period, iceberg discharges into the North Atlantic disrupted the meridional overturning circulation, leading to cooling in the Northern Hemisphere and warming in Antarctica(1,2). This asymmetric response can be explained by a bipolar see-saw mechanism(3-5), whereby changes in the strength of the meridional overturning circulation lead to changes in the interhemispheric heat transport. It is unclear, however, to what extent the response of the overturning circulation is a function of freshwater flux and boundary climate conditions(4). Here we use foraminiferal isotope and pollen records from the Portuguese margin to reconstruct surface-and deep-water hydrography and atmospheric changes during the last and penultimate glacial periods. When we compare our records with temperature reconstructions from Antarctica6, we find that the bipolar see-saw was a characteristic feature of both glacial periods. However, the comparison also underlines the dependence of the bipolar see-saw on background climate and magnitude of iceberg discharge. It also suggests that an intensified hydrological cycle may lead to a weaker overturning circulation with a smaller disruption threshold and extended North Atlantic stadial durations.
机译:在最后一个冰川期,冰山向北大西洋的排放扰乱了子午线的翻转循环,导致北半球降温,南极变暖(1,2)。这种不对称响应可以通过双极跷跷板机制来解释(3-5),由此子午翻转循环强度的变化会导致半球间热传递的变化。然而,尚不清楚倾覆环流的响应程度在多大程度上是淡水通量和边界气候条件的函数(4)。在这里,我们使用葡萄牙边缘的有孔虫同位素和花粉记录来重建过去和倒数第二个冰川时期的地表和深水水文以及大气变化。当我们将记录与南极洲6的温度重建进行比较时,我们发现双极跷跷板是这两个冰川期的特征。但是,该比较还强调了双极跷跷板对背景气候和冰山流量的依赖性。这也表明,加强的水文循环可能会导致较弱的倾覆环流,较小的破坏阈值和延长的北大西洋持续时间。

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