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Observation of Wave Energy Evolution in Coastal Areas Using HF Radar

机译:利用高频雷达观测沿海地区波能的演化

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摘要

The capability of phased-array HF radar systems to sample the spatial distribution of wave energy is investigated in different storm scenarios and coastal configurations. First, a formulation introduced by D. E. Barrick to extract significant wave height H_s from backscatter Doppler spectra was calibrated and subsequently tested (to assess bias and uncertainty) with data from seven different buoy/gauge stations collected during three different field experiments. Afterward, H_s observations were obtained for selected sampling locations within the radar effective domain (in all experiments), and a filtering technique based on wavelet transform characterization and decomposition was applied. The accuracy of the filtered radar-derived observations was assessed by comparing these estimates to results from independently calibrated wave propagation models. It was found that the HF radar accurately measured the energy field induced by different storm events. The filtering technique minimized the contribution of unrealistic features introduced by the presence of defective sampling, which is intrinsic to radar remote sensing at this frequency, and it proved to be central for the use of the HF radar as a tool to identify wave energy trends and potential zones of wave energy concentration in coastal areas. These findings show that the sampling capabilities of radar systems may be greatly enhanced because reliable wave energy estimates can be obtained in addition to conventional surface current measurements. This is particularly important in locations such as harbor entrances where in situ measuring devices cannot be deployed.
机译:在不同的风暴情景和沿海配置下,研究了相控阵高频雷达系统采样波能空间分布的能力。首先,对由D. E. Barrick引入的从后向多普勒频谱中提取明显的波高H_s的公式进行了校准,然后使用在三个不同的野外实验中收集的来自七个不同浮标/水位站的数据进行了测试(以评估偏差和不确定性)。之后,在雷达有效域内(在所有实验中)针对选定的采样位置获得了H_s观测值,并且应用了基于小波变换特征和分解的滤波技术。通过将这些估计值与独立校准的波传播模型的结果进行比较,可以评估滤波后的雷达观测结果的准确性。结果发现,高频雷达能够准确测量不同风暴事件引起的能量场。滤波技术最大程度地减少了有缺陷采样带来的不切实际特征的影响,这种缺陷采样是该频率下雷达遥感所固有的,事实证明,这对于将HF雷达用作识别波能趋势和沿海地区波浪能集中的潜在区域。这些发现表明,雷达系统的采样能力可能会大大提高,因为除了常规的表面电流测量之外,还可以获得可靠的波能估计。这对于无法部署现场测量设备的位置(例如港口入口)尤其重要。

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  • 来源
    《Journal of atmospheric and oceanic technology》 |2009年第9期|1891-1909|共19页
  • 作者单位

    Applied Marine Physics Dept., Rosenstiel School of Marine and Atmospheric Science, University of Miami, 4600 Rickenbacker Causeway, Miami, FL 33149;

    Applied Marine Physics Department, Rosenstiel School of Marine and Atmospheric Science, University of Miami, Coral Gables, Florida;

    Applied Marine Physics Department, Rosenstiel School of Marine and Atmospheric Science, University of Miami, Coral Gables, Florida;

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