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The response of a simple Antarctic ice-flow model to temperature and sea-level fluctuations over the Cenozoic era

机译:简单的南极冰流模型对新生代时代温度和海平面波动的响应

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An ice-flow model is used to simulate the Antarctic ice-sheet volume and deep-sea temperature record during Cenozoic times. We used a vertically integrated axisymmetric ice-sheet model, including bedrock adjustment. In order to overcome strong numerical hysteresis effects during climate change, the model is solved on a stretching grid. The Cenozoic reconstruction of the Antarctic ice sheet is accomplished by splitting the global oxygen isotope record derived from benthic foraminifera into an ice-volume and a deep-sea temperature component. The model is tuned to reconstruct the initiation of a large ice sheet of continental size at 34 Ma. The resulting ice volume curve shows that small ice caps (<107 km3) could have existed during Paleocene and Eocene times. Fluctuations during the Miocene are large, indicating a retreat back from the coast and a vanishing ice flux across the grounding line, but with ice volumes still up to 60% of the present-day volume. The resulting deep-sea temperature curve shows similarities with the paleotemperature curve derived from Mg/Ca in benthic calcite from 25 Ma till the present, which supports the idea that the ice volume is well reproduced for this period. Before 34 Ma, the reproduced deep-sea temperature is slightly higher than is generally assumed. Global sea-level change turns out to be of minor importance when considering the Cenozoic evolution of the ice sheet until 5 Ma.
机译:冰流模型用于模拟新生代时代期间的南极冰纸卷和深海温度记录。我们使用垂直集成的轴对称冰板模型,包括基岩调整。为了克服气候变化期间克服强大的数值滞后效果,该模型在拉伸网格上得到解决。南极冰盖的新生代重建是通过将源自底栖传染脉的全球氧同位素记录分成冰量和深海温度成分来实现。该模型被调整为重建34 mA的大陆大小的大型冰盖的启动。得到的冰量曲线表明,古典和群岛时,小冰盖(<107 km3)可以存在。内科期间的波动很大,表明从海岸撤退,横跨接地线的消失冰通量,但冰量量仍然高达当今体积的60%。由此产生的深海温度曲线显示了与底栖方解石中的Mg / Ca源自近25 mA的古间化曲线的相似性,直至目前,这支持该期间冰量量良好再现的想法。在34 mA之前,再现的深海温度略高于通常假设。当考虑到冰盖的新生代演变到5 mA时,全球海平面变化结果很重要。

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