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The coherence of wind and radar data obtained during the Joint US-Russia Internal Wave Experiment

机译:美俄联合内波实验获得的风和雷达数据的相干性

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The rate at which short surface waves relax to equilibrium after a perturbation is a key parameter in models of the modulation of surface waves by internal waves. The authors report on an investigation of the short wave relaxation rates by statistical comparisons of fluctuations in the near surface wind speed under unstable conditions and variations in the backscatter cross section from an airborne radar. Data for this study were obtained during the Joint US/Russia Internal Wave Remote Sensing Experiment. During this experiment wind speed was measured from both a ship and a buoy. Ku-band, vertically-polarized radar data were obtained for a range of look directions. The estimation of short-wave growth and dissipation rates are discussed. The authors show that if the dissipation term appearing on the right hand side of the wave action balance equation is written in terms of a power law in wave energy, E/sup n/, and the nonlinear energy transfer is small, then the exponent, n, is related to the wind dependence of the radar backscatter. This analysis suggests that scatterometer data obtained at different angles relative to the wind direction could prove useful in the development of new spectral relaxation models.
机译:在扰动之后短表面波放松到平衡的速率是由内部波调制表面波的模型中的关键参数。作者报告了通过在不稳定条件下的近地表风速波动的统计比较以及空气雷达的反向散射横截面的变化来调查短波松弛率的调查。在美国/俄罗斯内部波遥感实验中获得了本研究的数据。在此实验期间,从船舶和浮标测量风速。 Ku波段,在一系列外观方向上获得垂直极化的雷达数据。讨论了短波生长和耗散率的估计。作者表明,如果在波能量中的电力法中写入波动余量方程的辐散术语,则E / SUP N /,非线性能量传输小,则是指数, n,与雷达反向散射的风依赖性有关。该分析表明,在不同角度相对于风向上获得的散射仪数据可以证明在新的光谱松弛模型的开发中有用。

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