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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >A surface velocity spiral observed with ADCP and HF radar in the Tsushima Strait
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A surface velocity spiral observed with ADCP and HF radar in the Tsushima Strait

机译:对马海峡利用ADCP和高频雷达观测到的表面速度螺旋

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The structure of a wind-driven flow in the Tsushima Strait is investigated with moored acoustic Doppler current profiler (ADCP) and HF radar. Two ADCPs of high and low acoustic frequencies are simultaneously used to measure velocities in both the surface boundary layer and the interior with high resolutions. The velocity relative to an interior flow in the surface boundary layer is estimated by subtracting the reference velocity (estimated from velocities at greater depths) from a velocity in the surface layer, and complex principal component analysis (PCA) of the lagged wind stress and the relative velocity is performed. Despite a short (2 weeks) observation period of relatively calm and variable wind, a clockwise velocity spiral similar to a theoretical Ekman spiral is detected as the first mode of PCA. Ekman transport estimated from the relative velocities of the first mode agrees best with Ekman transport expected from wind stress of the first mode with 11–13 hours time lag, for which the explained variance of the first mode is also largest. This indicates that a wind-driven flow is balanced with wind stress after 11–13 hours, half of the inertial period at this latitude. Eddy viscosity is also inferred from wind stress and the relative velocities of the first mode. It is found to increase from O(10~-3) m2 s~-1 at greater depth to O(10~-2) m2 s~-1 near the sea surface.
机译:用系泊声多普勒电流廓线仪和高频雷达研究了对马海峡的风流结构。高和低声学频率的两个ADCP同时用于高分辨率测量表面边界层和内部的速度。相对于表面边界层内部流动的速度是通过从表面层速度减去参考速度(从更大深度的速度估算得出),滞后风应力和风速的复杂主成分分析(PCA)来估算的进行相对速度。尽管相对平静和多风的观察期很短(2周),但仍将类似于理论Ekman螺旋线的顺时针速度螺旋线检测为PCA的第一模式。根据第一种模式的相对速度估算的埃克曼输运与根据第一种模式的风应力预期的Ekman输运最相符,时滞为11-13小时,为此,第一种模式的解释方差也最大。这表明在11-13小时后,风流与风应力平衡,这是该纬度的惯性周期的一半。从风应力和第一模式的相对速度还可以推断出涡流粘度。发现从更深处的O(10〜-3)m2 s〜-1增加到海面附近的O(10〜-2)m2 s〜-1。

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