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Links between ocean temperature and iceberg discharge during Heinrich events

机译:海因里希事件期间海洋温度与冰山排放之间的联系

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Palaeoclimate records have revealed the presence of millennial-scale climate oscillations throughout the last glacial period(1). Six periods of extreme cooling in the Northern Hemisphere-known as Heinrich events-were marked by an enhanced discharge of icebergs into the North Atlantic Ocean(2,3), increasing the deposition of ice-rafted debris(2). Increased sliding at the base of ice sheets as a result of basal warming has been proposed to explain the iceberg pulses(4-6), but recent observations(7,8) suggest that iceberg discharge is related to a strong coupling between ice sheets, ice shelves and ocean conditions. Here we use a conceptual numerical model to simulate the effect of ocean temperature on ice-shelf width, as well as the impact of the resultant changes in ice-shelf geometry on ice-stream velocities. Our results demonstrate that ocean temperature oscillations affect the basal melting of the ice shelf and will generate periodic pulses of iceberg discharge in an ice sheet with a fringing shelf. We also find that the irregular occurrence of Heinrich events seen in the palaeoclimate records can be simulated by periodic ocean forcing combined with varying accumulation rates of the ice sheet. Our model simulations support a link between millennial-scale ocean temperature variability and Heinrich events during the last glacial period.
机译:古气候记录表明,在整个上一个冰川期中都存在千年尺度的气候振荡(1)。北半球的六个极端降温期被称为海因里希事件,其特征是冰山向北大西洋的排放增加(2,3),增加了冰筏残骸的沉积(2)。有人提出由于基础变暖而使冰盖底部滑动增加,以解释冰山脉动(4-6),但最近的观测结果(7,8)表明,冰山流量与冰盖之间的强耦合有关,冰架和海洋条件。在这里,我们使用概念性的数值模型来模拟海洋温度对冰架宽度的影响,以及由此产生的冰架几何形状变化对冰流速度的影响。我们的结果表明,海洋温度振荡会影响冰架的基础融化,并将在带有边缘架的冰盖中产生周期性的冰山排放脉冲。我们还发现,古气候记录中出现的海因里希事件的不规则发生可以通过周期性的海洋强迫和冰盖的不同堆积速率来模拟。我们的模型模拟支持了上个冰川期的千年尺度海洋温度变化与海因里希事件之间的联系。

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