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Water depth and surface current retrievals from airborne optical measurements of surface gravity wave dispersion

机译:从机载光学测量表面重力波的色散中获取水深和表面电流

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Visible images of nearshore ocean waves obtained from an aircraft have been utilized to estimate the surface currents and water depth below the waves. A digital framing camera was mounted in a motion-stabilized turret and used to obtain temporal sequences of high-quality optical images of shoaling ocean waves. Data on the position and attitude of the camera/turret were used to map the image data to a rectilinear coordinate system at the level of the surface, effectively separating the spatial and temporal modulations due to the waves. The resulting three-dimensional (3-D) space-time data sets were Fourier transformed to obtain frequency-wave number spectra of these modulations. These spectra contain information on the propagation characteristics of the waves, such as their wavelengths and frequencies, and their directions and speeds of propagation. The water depth and current vector have been estimated by choosing these parameters so that a "best" fit is obtained between the theoretical dispersion relation for linear gravity waves and these 3-D wave spectra.. Image data sets were acquired during the Shoaling Waves Experiment (SHOWEX) along the quasi-linear coastline in the vicinity of the Army Corps of Engineers' Field Research Facility (FRF) near Duck on the North Carolina Outer Banks. Summary wave parameters and bathymetry and current retrievals are typically within 10% of contemporaneous in situ measurements, though outliers occur. [References: 36]
机译:从飞机获得的近海海浪的可见图像已被用来估计海浪和海浪下方的水深。将数码成帧照相机安装在运动稳定的转塔中,并用于获取浅滩海浪的高质量光学图像的时间序列。有关摄像机/转塔位置和姿态的数据用于将图像数据映射到表面水平的直线坐标系,从而有效地分离了由于波浪引起的空间和时间调制。对所得的三维(3-D)时空数据集进行傅立叶变换,以获得这些调制的频率-波谱。这些光谱包含有关波的传播特性的信息,例如波的波长和频率,波的传播方向和速度。通过选择这些参数可以估算出水深和水流矢量,以便在线性重力波的理论色散关系与这些3-D波谱之间获得“最佳”拟合。在浅波实验中获取图像数据集(SHOWEX)沿北卡罗来纳州外滩鸭子附近的陆军工程师野外研究设施(FRF)附近的准线性海岸线。尽管存在离群值,但摘要波参数,测深和当前取水量通常在同期进行的原位测量的10%以内。 [参考:36]

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