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Orbital modulation of millennial-scale climate variability in an earth system model of intermediate complexity

机译:中等复杂度地球系统模型中千年尺度气候变率的轨道调制

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The effect of orbital variations on simulated millennial-scale variability of the Atlantic Meridional Overturning Circulation (AMOC) is studied using the earth system model of intermediate complexity LOVECLIM. It is found that for present-day topographic boundary conditions low obliquity values (~22.1°) favor the triggering of internally generated millennial-scale variability in the North Atlantic region. Reducing the obliquity leads to changes of the pause-pulse ratio of the corresponding AMOC oscillations. Stochastic excitations of the density-driven overturning circulation in the Nordic Seas can create regional sea-ice anomalies and a subsequent reorganization of the atmospheric circulation. The resulting remote atmospheric anomalies over the Hudson Bay can release freshwater pulses into the Labrador Sea leading to a subsequent reduction of convective activity. The millennial-scale AMOC oscillations disappear if LGM bathymetry (with closed Hudson Bay) is prescribed. Furthermore, our study documents the marine and terrestrial carbon cycle response to millennial-scale AMOC variability. Our model results support the notion that stadial regimes in the North Atlantic are accompanied by relatively high levels of oxygen in thermocline and intermediate waters off California – in agreement with paleo-proxy data.
机译:使用中等复杂度LOVECLIM的地球系统模型研究了轨道变化对大西洋经络翻转环流(AMOC)的模拟千禧年尺度变化的影响。已经发现,对于当今的地形边界条件,低倾角值(〜22.1°)有利于触发北大西洋区域内部产生的千年尺度变化。降低倾斜度会导致相应AMOC振荡的暂停脉冲比发生变化。北欧海洋中密度驱动的倾覆环流的随机激发会产生区域性海冰异常,进而造成大气环流的重组。哈德逊湾上空的偏远大气异常可能将淡水脉冲释放到拉布拉多海中,从而导致对流活动随后减少。如果规定使用LGM测深法(哈德逊湾封闭),则千年级AMOC振荡将消失。此外,我们的研究记录了海洋和陆地碳循环对千年尺度AMOC变异的响应。我们的模型结果支持这样的观点,即北大西洋的固定状态伴随着加利福尼亚以外的温跃层和中间水域中相对较高的氧气含量-与古代理数据一致。

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