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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Seasonal overturning circulation in the Red Sea: 2. Winter circulation
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Seasonal overturning circulation in the Red Sea: 2. Winter circulation

机译:红海的季节性倾覆环流:2.冬季环流

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摘要

The shallow winter overturning circulation in the Red Sea is studied using a 50 year highresolution MITgcm (MIT general circulation model) simulation with realistic atmospheric forcing. The overturning circulation for a typical year, represented by 1980, and the climatological mean are analyzed using model output to delineate the three-dimensional structure and to investigate the underlying dynamical mechanisms. The horizontal model circulation in the winter of 1980 is dominated by energetic eddies. The climatological model mean results suggest that the surface inflow intensifies in a western boundary current in the southern Red Sea that switches to an eastern boundary current north of 24°N. The overturning is accomplished through a cyclonic recirculation and a cross-basin overturning circulation in the northern Red Sea, with major sinking occurring along a narrow band of width about 20 km along the eastern boundary and weaker upwelling along the western boundary. The northward pressure gradient force, strong vertical mixing, and horizontal mixing near the boundary are the essential dynamical components in the model's winter overturning circulation. The simulated water exchange is not hydraulically controlled in the Strait of Bab el Mandeb; instead, the exchange is limited by bottom and lateral boundary friction and, to a lesser extent, by interfacial friction due to the vertical viscosity at the interface between the inflow and the outflow.
机译:利用具有逼真的大气强迫的50年高分辨率MITgcm(麻省理工学院一般环流模型)模拟研究了红海中的浅层冬季翻转环流。使用模型输出分析典型年份(以1980年为代表)的倾覆环流和气候平均值,以描绘三维结构并研究潜在的动力学机制。 1980年冬季的水平模式环流以高能涡旋为主。该气候模型的平均结果表明,在南红海的西部边界流中,地表流入量增加,而在北纬24°N处切换为东部边界流。倾覆是通过北部红海的气旋再循环和跨流域倾覆环流完成的,主要下沉发生在沿东部边界约20 km的窄带上,而沿西部边界的上升较弱。在模型的冬季翻转环流中,向北的压力梯度力,边界附近的强垂直混合和水平混合是模型的重要动力成分。 Bab el Mandeb海峡没有通过水力控制模拟的水交换。取而代之的是,交换受底部和侧向边界摩擦的限制,并且在较小程度上受流入和流出之间的界面处的垂直粘度所引起的界面摩擦的限制。

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