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Causes of decadal changes of the freshwater content in the Arctic Ocean.

机译:北冰洋淡水含量年代际变化的原因。

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Decadal changes of the liquid freshwater content in the Arctic Ocean are studied with a suite of forward and adjoint model simulations. Adjoint sensitivities show that freshwater volume changes in the Norwegian Atlantic Current north of the Lofoten basin and a salinity maximum in the Fram Strait and in the Canadian Archipelago lead to an enhanced northward transport of freshwater. The dynamical sensitivities indicate that stronger freshwater export from the Arctic is related to an enhanced cyclonic circulation around Greenland, with an enhanced export through the Canadian Archipelago and a stronger circulation within the Fram Strait. Associated with this circulation around Greenland is a large-scale cyclonic circulation in the Arctic. Cyclonic wind stress anomalies in the Arctic Ocean as well as over the Nordic seas and parts of the subpolar Atlantic are optimal to force the freshwater transport changes. Results from a simulation over the period 1948-2010 corroborate the result that Arctic freshwater content changes are mainly related to the strength of the circulation around Greenland. Volume transport changes are more important than salinity changes. Freshwater content changes can be explained by wind stress-driven transport variability, with larger export for cyclonic atmospheric forcing. By redistributing freshwater within the Arctic, cyclonic wind stress leads to high sea level in the periphery of the Arctic, and the stronger gradient from the Arctic to the North Atlantic enhances the export through the passages. A second mechanism is the wind-driven Sverdrup circulation, which can be described by Godfrey's (1989) "island rule" including friction. For this, wind stress in the Arctic is not important.
机译:通过一套正向和伴随模型模拟研究了北冰洋中液态淡水含量的年代际变化。伴随的敏感性表明,罗弗敦盆地以北的挪威大西洋洋流中的淡水量变化以及弗拉姆海峡和加拿大群岛中的最大盐度导致了向北的淡水运输增加。动态敏感性表明,从北极的淡水出口量增加与格陵兰岛周围的气旋循环增强有关,与通过加拿大群岛的出口量增加以及弗拉姆海峡内的循环量增加有关。与格陵兰岛周围的这种环流有关的是北极的大规模气旋环流。北冰洋以及北欧海域和部分亚极大西洋的气旋风应力异常是促使淡水运输变化的最佳方法。 1948-2010年期间的模拟结果证实了北极淡水含量的变化主要与格陵兰岛周围的环流强度有关的结果。体积迁移变化比盐度变化更重要。淡水含量的变化可以用风应力驱动的运输变异性来解释,旋风大气强迫的出口量更大。通过在北极内重新分配淡水,气旋风应力导致北极外围海平面升高,并且从北极到北大西洋的更强坡度增强了通过通道的出口。第二种机制是风驱动的Sverdrup循环,这可以用Godfrey(1989)的“岛屿规则”来描述,包括摩擦。为此,北极的风应力并不重要。

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