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Effects of surface current–wind interaction in an eddy-rich general ocean circulation simulation of the Baltic Sea

机译:在波罗的海的涡流丰富的一般海洋环流模拟中,地表-风-风相互作用的影响

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Deoxygenation in the Baltic Sea endangers fish yields and favours noxious algal blooms. Yet, vertical transport processes ventilating the oxygen-deprived waters at depth and replenishing nutrient-deprived surface waters (thereby fuelling export of organic matter to depth) are not comprehensively understood. Here, we investigate the effects of the interaction between surface currents and winds on upwelling in an eddy-rich general ocean circulation model of the Baltic Sea. Contrary to expectations we find that accounting for current–wind effects inhibits the overall vertical exchange between oxygenated surface waters and oxygen-deprived water at depth. At major upwelling sites, however (e.g. off the southern coast of Sweden and Finland) the reverse holds: the interaction between topographically steered surface currents with winds blowing over the sea results in a climatological sea surface temperature cooling of 0.5K. This implies that current–wind effects drive substantial local upwelling of cold and nutrient-replete waters.
机译:波罗的海的脱氧危害鱼类产量,并促进有害的藻华。然而,尚未全面了解垂直运输过程使深层缺氧的水通气并补充深层营养素缺乏的地表水(从而推动了有机物向深层的出口)。在这里,我们研究了波罗的海涡流丰富的一般海洋环流模型中地表流与风之间相互作用对上升流的影响。与预期相反,我们发现考虑风向影响会抑制深层含氧地表水和缺氧水之间的整体垂直交换。但是,在主要的上升流地点(例如,在瑞典和芬兰的南部海岸以外),情况恰恰相反:在地形导向的地表流与海上风之间的相互作用导致了0.5K的气候海面温度降温。这意味着,风向效应会导致寒冷和营养丰富的水在当地大量上升。

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