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HF Radar Sea-echo from Shallow Water

机译:浅水高频雷达回波

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摘要

HF radar systems are widely and routinely used for the measurement of ocean surface currents and waves. Analysis methods presently in use are based on the assumption of infinite water depth, and may therefore be inadequate close to shore where the radar echo is strongest. In this paper, we treat the situation when the radar echo is returned from ocean waves that interact with the ocean floor. Simulations are described which demonstrate the effect of shallow water on radar sea-echo. These are used to investigate limits on the existing theory and to define water depths at which shallow-water effects become significant. The second-order spectral energy increases relative to the first-order as the water depth decreases, resulting in spectral saturation when the waveheight exceeds a limit defined by the radar transmit frequency. This effect is particularly marked for lower radar transmit frequencies. The saturation limit on waveheight is less for shallow water. Shallow water affects second-order spectra (which gives wave information) far more than first-order (which gives information on current velocities), the latter being significantly affected only for the lowest radar transmit frequencies for extremely shallow water. We describe analysis of radar echo from shallow water measured by a Rutgers University HF radar system to give ocean wave spectral estimates. Radar-derived wave height, period and direction are compared with simultaneous shallow-water in-situ measurements.
机译:高频雷达系统被广泛并常规地用于测量海面洋流和海浪。当前使用的分析方法是基于无限水深的假设,因此在雷达回波最强的海岸附近可能不够。在本文中,我们处理了雷达回波从与海床相互作用的海浪返回时的情况。描述了模拟,这些模拟证明了浅水对雷达海回波的影响。这些用于研究现有理论的局限性,并定义浅水影响变得明显的水深。随着水深的减小,二阶频谱能量相对于一阶频谱能量增加,当波高超过雷达发射频率定义的极限时,频谱饱和。对于较低的雷达发射频率,此效果尤为明显。对于浅水,波高的饱和极限较小。浅水对二阶频谱(提供波信息)的影响远大于一阶(提供当前速度的信息),后者仅在极浅水域的最低雷达发射频率下受到显着影响。我们描述了由罗格斯大学(Rutgers University)HF雷达系统测量的浅水雷达回波的分析,以给出海浪频谱估计。将雷达衍生的波高,周期和方向与同时进行的浅水现场测量相比较。

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