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On the Patterns of Wind-Power Input to the Ocean Circulation

机译:关于海洋循环风电输入的模式

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摘要

Pathways of wind-power input into the ocean general circulation are analyzed using Ekman theory. Direct rates of wind work can be calculated through the wind stress acting on the surface geostrophic flow. However, because that energy is transported laterally in the Ekman layer, the injection into the geostrophic interior is actually controlled by Ekman pumping, with a pattern determined by the wind curl rather than the wind itself. Regions of power injection into the geostrophic interior are thus generally shifted poleward compared to regions of direct wind-power input, most notably in the Southern Ocean, where on average energy enters the interior 10° south of the Antarctic Circumpolar Current core. An interpretation of the wind-power input to the interior is proposed, expressed as a downward flux of pressure work. This energy flux is a measure of the work done by the Ekman pumping against the surface elevation pressure, helping to maintain the observed anomaly of sea surface height relative to the global-mean sea level.
机译:使用EKMAN理论分析了风电输入到海洋一般循环的通道。通过作用于表面出差流动的风力应力来计算风力工作的直接速率。然而,因为能量在Ekman层横向运输,所以将进入热脑内内部的喷射实际上由Ekman泵送控制,具有由风卷曲而不是风本身确定的图案。因此,与直接风力输入的区域相比,热量内部的功率注射区域通常会使极向向侧板移动,最值得注意的是在南部海洋中,平均能量在南极循环芯的南部的内部10°进入内部10°。提出了对内部的风力输入的解释,表示为压力工作的向下通量。这种能量通量是由Ekman泵送抵抗表面升高压力的工作的衡量标准,有助于将观察到的海面高度相对于全球平均海平面的异常。

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