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Frequency-wavenumber spectra of shoaling ocean waves

机译:浅海浪的波数谱

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摘要

Accurate knowledge of the kinematics and dynamics of ocean waves as they shoal and break in even the simplest morphological situation is a major challenge of current research. The resulting energy flux and radiation stresses drive nearshore turbulence and currents, and these scour up and transport sediments in prodigious amounts during storms. In addition, the high dynamic forces during breaking are a danger to safety of engineering surveying, construction and military operations. This paper describes a new technique for measuring ocean waves, observing these processes and calculating many of the important underlying parameters. A time series of optical images is collected from an aircraft, these are registered to a stationary, geodetic coordinate system on the surface, and 3-D cubes of these data are Fourier transformed to calculate 3-D frequency-wavenumber spectra. These are examined for wave information, including measuring their dispersion, which is interesting in its own right but also used to retrieve the water depth and current field in which the waves are propagating.
机译:准确了解海浪在甚至最简单的形态情况下浅滩和破裂时的运动学和动力学,是当前研究的主要挑战。由此产生的能量通量和辐射应力驱使近岸湍流和洋流,它们在暴风雨期间冲刷并输送大量的沉积物。此外,断裂过程中的高动力会危害工程勘测,建筑和军事行动的安全。本文介绍了一种用于测量海浪,观察这些过程并计算许多重要基础参数的新技术。从飞机上收集了一个时间序列的光学图像,将它们记录到表面上的静止大地坐标系中,并对这些数据的3D立方体进行傅立叶变换,以计算3D频率-波数谱。检查这些波浪以获取波浪信息,包括测量其分散,这本身很有趣,但也可用于检索波浪传播的水深和电流场。

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