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A model-data comparison of δ~(13)C in the glacial Atlantic Ocean

机译:冰河大西洋中δ〜(13)C的模型数据对比

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摘要

We compare a compilation of 220 sediment core δ~(13)C data from the glacial Atlantic Ocean with three-dimensional ocean circulation simulations including a marine carbon cycle model. The carbon cycle model employs circulation fields which were derived from previous climate simulations. All sediment data have been thoroughly quality controlled, focusing on epibenthic foraminiferal species (such as Cibicidoides wuellerstorfi or Planulina ariminensis) to improve the comparability of model and sediment core carbon isotopes. The model captures the general δ~(13)C pattern indicated by present-day water column data and Late Holocene sediment cores but underestimates intermediate and deep water values in the South Atlantic. The best agreement with glacial reconstructions is obtained for a model scenario with an altered freshwater balance in the Southern Ocean that mimics enhanced northward sea ice export and melting away from the zone of sea ice production. This results in a shoaled and weakened North Atlantic Deep Water flow and intensified Antarctic Bottom Water export, hence confirming previous reconstructions from paleoproxy records. Moreover, the modeled abyssal ocean is very cold and very saline, which is in line with other proxy data evidence.
机译:我们将来自冰河大西洋的220个沉积物核心δ〜(13)C数据与包括海洋碳循环模型在内的三维海洋环流模拟进行了比较。碳循环模型使用的循环场是从以前的气候模拟得出的。所有沉积物数据都经过了严格的质量控制,重点放在表皮的有孔虫物种(如Cibicidoides wuellerstorfi或Planulina ariminensis)上,以提高模型和沉积物核心碳同位素的可比性。该模型捕获了当今水柱数据和晚全新世沉积岩心所指示的一般δ〜(13)C模式,但低估了南大西洋的中深水值。对于一个模拟情景,它与南大洋的淡水平衡发生了变化,从而模拟了北冰洋出口的增加和海冰生产区的融化,从而获得了与冰川重建的最佳契合。这导致北大西洋深水流量减少和减弱,南极底水出口增加,从而证实了以前从古过往记录中的重建。此外,模拟的深海海洋非常寒冷且盐分非常高,这与其他代理数据证据相符。

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