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The solubility pump of carbon in the subtropical gyre of the North Atlantic

机译:碳在北大西洋亚热带回旋中的溶解度泵

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The subduction of carbon is examined using abiotic models of the solubility pump in the subtropical gyre of the North Atlantic. The importance of the seasonal cycle of the mixed layer, and advection of carbon, is examined using sensitivity experiments with a Lagrangian model of the carbon system. The rate of subduction of carbon is found to be strongly influenced by the gradients in mixed-layer thickness over the gyre and, to a lesser extent, modified by the end of winter bias in the properties of subducted fluid. A seasonally-cycling geochemical model of the carbon system is then developed for the North Atlantic. The model is diagnosed to examine the seasonal exchange in carbon between the atmosphere and ocean induced by the seasonal warming and cooling. There is a net annual air-sea flux of carbon into the subtropical gyre of the model due to undersaturation of p_(CO_2) with respect to the local equilibrium with the atmosphere. The undersaturation is due to advection of carbon by the circulation. Along the path of the Gulf Stream, northward advection and cooling of the low latitude waters is so rapid that the surface waters are significantly undersaturated in carbon. Due to its long equilibration period, there is a resultant air-sea flux of carbon dioxide over the northern flank and interior of the subtropical gyre. Warm, low carbon water from the tropics is fluxed into the southern flank of the subtropical gyre in the Ekman layer, inducing an oceanic uptake of carbon there. The model experiments suggest that it is necessary to account for advection to close the carbon budget in the observed time-series measurements at Bermuda.
机译:使用北大​​西洋亚热带回旋区中溶解度泵的非生物模型检查碳的俯冲。使用碳系统的拉格朗日模型进行敏感性实验,检验了混合层季节性循环和碳对流的重要性。发现碳的俯冲速率受旋流上混合层厚度梯度的强烈影响,并在较小程度上受到冬季俯冲后俯冲流体特性的影响而改变。然后为北大西洋开发了碳系统的季节性循环地球化学模型。诊断该模型以检查季节性变暖和降温引起的大气与海洋之间碳的季节性交换。由于相对于大气的局部平衡而言,p_(CO_2)的饱和度较低,因此进入模型的亚热带回旋管中每年都有海气净通量。欠饱和度是由于循环中碳的平流作用。沿着墨西哥湾流的路径,低纬度水域的北向平流和冷却是如此之快,以至于地表水的碳含量明显不足。由于其平衡期长,因此在亚热带回旋的北翼和内部产生了海气通量的二氧化碳。来自热带的温暖,低碳的水流入埃克曼层中亚热带回旋的南翼,导致海洋吸收了那里的碳。模型实验表明,在百慕大观察到的时间序列测量中,有必要考虑对流以关闭碳收支。

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