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首页> 外文期刊>Palaeogeography, Palaeoclimatology, Palaeoecology: An International Journal for the Geo-Sciences >sitivity of the ocean–atmosphere carbon cycle to ice-covered and ice-free conditions in the Nordic Seas during the Last Glacial Maximum
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sitivity of the ocean–atmosphere carbon cycle to ice-covered and ice-free conditions in the Nordic Seas during the Last Glacial Maximum

机译:在最后一次冰川最大期中,北欧大气对北极冰层的冰度和冰度条件的适应性

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摘要

A global carbon-cycle box model forced by an ocean-general circulation model (OGCM) is used to investigate how different sea-surface reconstructions for the northern North Atlantic Ocean (Nordic Seas) for the Last Glacial Maximum (LGM) affect the ocean–atmosphere carbon cycle via changes in the large-scale thermohaline circulation. For perennial sea-ice cover in the Nordic Seas [CLIMAP, Chart Ser. (Geol. Soc. Am.) MC-36 (1981)], the model-predicted deep-water formation areas, δ~(13)C distribution and ~(14)C ventilation ages are partly inconsistent with palaeoceanographic data for the glacial Atlantic Ocean. Considering ice-free conditions during LGM summer in the Nordic Seas [Weinelt et al., Palaeoclimatology 1 (1996) 283] brings the model results in better agreement with palaeoceanographic findings, thus supporting this particular sea-surface reconstruction. For both LGM scenarios, the ocean circulation model simulates a reduction in the export of North Atlantic Deep Water (NADW) to the Southern Ocean by 50% compared to today. The effect of changes in the intensity of the thermohaline circulation on atmospheric CO_2 content alone is rather small, accounting for approximately 20% of the net CO_2 lowering during the LGM.
机译:由海洋总循环模型(OGCM)强制建立的全球碳循环箱模型用于研究北大西洋北部(北欧海)最后一次冰期最大值(LGM)的不同海面重建如何影响海洋-通过大规模热盐循环的变化来改变大气碳循环。对于北欧海的多年生海冰覆盖物[CLIMAP,Chart Ser。 (Geol。Soc。Am。)MC-36(1981)],模型预测的深水形成区域,δ〜(13)C分布和〜(14)C通风年龄与冰川的古海洋学数据部分不一致。大西洋。考虑到北欧海LGM夏季无冰条件[Weinelt等人,古气候1(1996)283]使模型结果与古海洋学发现有更好的一致性,从而支持了这种特殊的海面重建。对于这两种LGM情景,海洋环流模型模拟了与今天相比,北大西洋深水(NADW)向南大洋的出口减少了50%。仅热盐循环强度的变化对大气CO_2含量的影响就很小,约占LGM期间净CO_2下降的20%。

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