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Surface current measurements using airborne visible image time series

机译:使用机载可见图像时间序列进行表面电流测量

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摘要

Measurements of nearshore water currents are important for a number of reasons, including understanding sediment transport and beach erosion, planning and evaluation of littoral construction projects, and military operations in very shallow water. Because direct measurements are difficult and expensive to make, remote sensing techniques are of great interest. A digital camera system has been used to remotely measure ocean surface currents from an aircraft by estimating the Doppler shift of gravity waves. Navigational data are used to map each of a sequence of images to a geodetic reference frame at the level of the mean ocean surface. The 3-D frequency-wave number spectrum of the luminance modulations in subsets of these mapped data exhibits the dispersion relation for surface gravity waves, and the 2-D velocity vector is retrieved by estimating the Doppler shift of the higher frequency waves in this spectrum, wavelengths in the band of about 5-30 m. The relationship of this technique to that of tracking visible surface features between image pairs is examined with examples. Current retrievals in shallow water outside the surf on a quasi-linear beach and in an exposed tidal inlet channel are favorably compared with simultaneous in situ current measurements, with errors of ~10% in magnitude and ~5° in direction.
机译:由于多种原因,近岸水流的测量非常重要,包括了解沉积物的运输和海滩侵蚀,沿海建设项目的规划和评估以及在非常浅水中的军事行动。由于直接测量困难且昂贵,因此遥感技术引起了极大的兴趣。数字照相机系统已用于通过估计重力波的多普勒频移来远程测量飞机的海面电流。导航数据用于将一系列图像中的每幅图像映射到平均海洋表面水平的大地测量参考系。这些映射数据的子集中的亮度调制的3D频率波数频谱表现出表面重力波的色散关系,并且通过估计该频谱中较高频率的波的多普勒频移来检索2D速度矢量。在大约5-30m的波段内的波长。通过示例检查了该技术与跟踪图像对之间的可见表面特征的关系。与同时进行原位电流测量相比,准线性海滩上海浪外的浅水区和潮汐进水通道裸​​露处的电流取回有利,幅度误差约为〜10%,方向误差约为〜5°。

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