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首页> 外文期刊>IEEE Geoscience and Remote Sensing Letters >Wind and Current Dependence of the First-Order Bragg Scattering Power in High-Frequency Radar Sea Echoes
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Wind and Current Dependence of the First-Order Bragg Scattering Power in High-Frequency Radar Sea Echoes

机译:高频雷达海回波中一阶布拉格散射功率的风和电流相关性

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In addition to being able to extract current velocities and wind directions, the first-order Bragg peaks in high-frequency (HF) radar sea echoes also have the potential to independently map wind speeds. During a two-month experiment with the HF-radar ocean state measuring and analyzing radar, model S in the Taiwan Strait in 2013, the dependence of the first-order spectral power (FSP) on wind was found to be deterministic. An empirical model was thereafter proposed to estimate the wind speed, which gave a performance that was comparable with the popular second-order inversion method. Strong oscillations (up to ±3 dB) in the FSP caused by underlying currents were observed and cannot be readily explained by the classic wave-current interaction theory with the assumption of wave-action conservation. When we matched the local maximum and minimum values of the FSP with the local extreme and zero values of the radial-current velocities, we found that most of the extremes of the FSP occurred when the radial-current velocity was 0. To account for this phenomenon, additional smoothing with a 12.4-h moving window was applied, which led to a significant improvement in the wind-speed estimates. This knowledge of the FSP's wind and current dependence helps us make another step toward the operational estimation of wind speeds using the first-order Bragg peaks.
机译:除了能够提取当前的速度和风向以外,高频(HF)雷达海回波中的一阶布拉格峰还具有独立绘制风速的潜力。在2013年台湾海峡S型高频雷达海洋状态测量和分析雷达的两个月实验中,发现一阶频谱功率(FSP)对风的依赖性是确定的。此后,提出了一个经验模型来估计风速,其性能与流行的二阶反演方法相当。观察到由底层电流引起的FSP中的强振荡(高达±3 dB),并且经典的波流相互作用理论在假设波动守恒的情况下不易解释。当我们将FSP的局部最大值和最小值与径向流速度的局部极值和零值进行匹配时,我们发现FSP的大多数极端发生在径向流速度为0时。现象,使用了12.4小时移动窗口进行了额外的平滑处理,这导致了风速估计值的显着改善。对FSP的风和电流依赖性的了解帮助我们朝使用一阶布拉格峰的风速进行操作估算又迈出了一步。

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