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Observations and numerical simulations of large-eddy circulation in the ocean surface mixed layer

机译:海面混合层大涡环流的观测与数值模拟

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摘要

Two near-surface dye releases were mapped on scales of minutes to hours temporally, meters to order 1 km horizontally, and 1-20 m vertically using a scanning, depth-resolving airborne lidar. In both cases, dye evolved into a series of rolls with their major axes approximately aligned with the wind and/or near-surface current. In both cases, roll spacing was also of order 5-10 times the mixed layer depth, considerably larger than the 1-2 aspect ratio expected for Langmuir cells. Numerical large-eddy simulations under similar forcing showed similar features, even without Stokes drift forcing. In one case, inertial shear driven by light winds induced large aspect ratio large-eddy circulation. In the second, a preexisting lateral mixed layer density gradient provided the dominant forcing. In both cases, the growth of the large-eddy structures and the strength of the resulting dispersion were highly dependent on the type of forcing.
机译:使用扫描深度分辨机载激光雷达,以时间在几分钟到几小时的尺度上绘制了两个近表面染料释放,水平以米为单位以水平1 km,垂直以1-20 m为单位。在这两种情况下,染料都演变成一系列的辊,它们的主轴与风和/或近地表电流大致对齐。在这两种情况下,辊间距也是混合层深度的5-10倍,大大大于Langmuir电池预期的1-2长宽比。即使没有斯托克斯漂移强迫,在相似强迫下的大涡模拟也显示出相似的特征。在一种情况下,由微风驱动的惯性剪切引起大纵横比的大涡流。第二,预先存在的横向混合层密度梯度提供了主导作用力。在这两种情况下,大涡结构的生长和所形成的分散体的强度高度依赖于强迫的类型。

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