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Airborne remote sensing of ocean wave directional wavenumber spectra in the marginal ice zone

机译:边缘冰区海浪定向波数光谱的机载遥感

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摘要

Interactions between surface waves and sea ice are thought to be an important, but poorly understood, physical process in the atmosphere-ice-ocean system. In this work, airborne scanning lidar was used to observe ocean waves propagating into the marginal ice zone (MIZ). These represent the first direct spatial measurements of the surface wave field in the polar MIZ. Data were compared against two attenuation models, one based on viscous dissipation and one based on scattering. Both models were capable of reproducing the measured wave energy. The observed wavenumber dependence of attenuation was found to be consistent with viscous processes, while the spectral spreading of higher wavenumbers suggested a scattering mechanism. Both models reproduced a change in peak direction due to preferential directional filtering. Floe sizes were recorded using co-located visible imagery, and their distribution was found to be consistent with ice breakup by the wave field.
机译:地表波和海冰之间的相互作用被认为是大气 - 冰海系统中的重要性,但理解的物理过程。在这项工作中,空中扫描利达用于观察传播到边缘冰区(MIZ)的海浪。这些代表极性Miz中的表面波场的第一直接空间测量。将数据与两个衰减模型进行比较,一个基于粘性耗散和基于散射的模型。两种模型都能够再现测量的波能量。发现观察到的衰减的依赖性与粘性过程一致,而高挥虫器的光谱扩展表明散射机构。两种模型由于优先定向滤波而再现峰值方向的变化。使用共同位于可见的图像记录浮鞋尺寸,并发现它们的分布与波场的冰块一致。

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