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Global Estimates of Wind Energy Input to Subinertial Motions in the Ekman-Stokes Layer

机译:Ekman-Stokes层中亚惯性运动的风能输入的全球估计

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摘要

By incorporating the wave-induced Coriolis-Stokes forcing into the classical Ekman model, the wind energy input to the Ekman-Stokes layer is investigated, with an emphasis on the surface wave effects when the direction of Stokes drift deviates from that of wind stress. Theoretical analysis of the kinetic energy balance of the Ekman-Stokes layer shows that the total wind energy input consists of the direct wind energy input and the wave-induced energy input. Details of the direct wind and wave-induced energy input are discussed. Based on the ECMWF ERA-40 Re-Analysis wind stress and surface wave data, the global total wind energy input to subinertial motions in the Ekman-Stokes layer is estimated at 2.19 TW, including 0.26 TW (12%) wave-induced energy input and 1.93 TW (88%) direct wind energy input. The effect of sea-ice coverage on the energy input to the Ekman-Stokes layer is also considered. It is shown that the global total energy input could be overestimated by 0.08 TW (about 4%) without taking the sea-ice coverage into account.
机译:通过将波浪感应的Coriolis-Stokes强迫纳入经典Ekman模型,研究了输入到Ekman-Stokes层的风能,并重点研究了Stokes漂移方向偏离风应力方向时的表面波效应。对Ekman-Stokes层动能平衡的理论分析表明,总风能输入由直接风能输入和波浪感生能量输入组成。讨论了直接风和波浪感应能量输入的细节。根据ECMWF ERA-40重新分析的风应力和表面波数据,估计输入到Ekman-Stokes层中的亚惯性运动的全球总风能为2.19 TW,其中包括0.26 TW(12%)的波感应能量输入和1.93 TW(88%)的直接风能输入。还考虑了海冰覆盖范围对输入到Ekman-Stokes层的能量的影响。结果表明,如果不考虑海冰覆盖范围,全球总能源输入可能被高估0.08 TW(约4%)。

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