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Extreme deepening of the Atlantic overturning circulation during deglaciation

机译:冰川消融期间,大西洋翻转循环的极端加深

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Glacial terminations during the late Pleistocene epoch are associated with changes in insolation. They are also punctuated by millennial-scale climate shifts, characterized by a weakening and subsequent strengthening of the Atlantic meridional overturning circulation. This ubiquitous association suggests that these oscillations may be a necessary component of deglaciation. Model simulations have suggested that the period of weakened circulation during these terminal oscillations would be followed by an overshoot of the circulation on its resumption, but this phenomenon has not yet been observed. Here we use radiocarbon measurements of benthic foraminifera and carbonate preservation indices to reconstruct ventilation changes in the deep South Atlantic Ocean over the past 40,000 years. We find evidence for a particularly deep expansion of the Atlantic overturning cell directly following the weak mode associated with Heinrich Stadial 1. Our analysis of an ocean general circulation model simulation suggests that North Atlantic Deep Water export during the expansion was greater than that of interglacial conditions. We find a similar deep expansion during Dansgaard-Oeschger Interstadial Event 8, 38,000 years ago, which followed Heinrich Stadial 4. We conclude that the rise in atmospheric CO 2 concentrations and resultant warming associated with an especially weak overturning circulation are sufficient to trigger a switch to a vigorous circulation, but a full transition to interglacial conditions requires additional forcing at an orbital scale.
机译:更新世晚期的冰川终止与日照的变化有关。它们还以千禧年尺度的气候变化为特征,其特征是大西洋子午线翻转环流减弱并随后增强。这种普遍存在的联系表明,这些振荡可能是冰消作用的必要组成部分。模型仿真表明,在这些末级振荡过程中,弱循环的周期将跟随循环在恢复时的过冲,但尚未观察到这种现象。在这里,我们使用底栖有孔虫的放射性碳测量值和碳酸盐保存指数来重建过去40,000年南大西洋深处的通风变化。我们发现有证据表明,直接在与海因里希体育场1号相关的弱模式作用下,大西洋翻转单元发生了特别深的膨胀。我们对海洋总环流模型模拟的分析表明,膨胀期间北大西洋深水出口量大于冰间条件下的出口量。我们在海因里希体育场4之后的38,000年前的丹斯加德·厄斯格(Dansgaard-Oeschger)际事件8中发现了类似的深度扩展。我们得出结论,大气中CO 2浓度的上升以及与特别弱的倾覆环流相关的变暖足以触发转换。到剧烈的循环,但是要完全过渡到冰间条件需要在轨道尺度上施加额外的强迫。

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