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Analysis of internal waves around the Korean Peninsula using RADARSAT-1 data

机译:使用RADARSAT-1数据分析朝鲜半岛周围的内部波

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Surface signatures of oceanic internal waves (IWs) are often observed in synthetic aperture radar (SAR) images since IWs change surface roughness through the interaction of small-scale ocean waves with varying currents induced by IWs. If we know the relationship between the vertical and horizontal parameters governing IWs, the mixed layer depth (MLD) can be estimated from SAR data since IWs propagate along a pycnocline where the water density changes rapidly. This study presents a method for estimating MLD from SAR data using IW images observed by RADARSAT-1 over the east waters of the Korean Peninsula. To interpret IWs using SAR data, the backscatter radar cross section is computed by applying the small perturbation model to the sea surface perturbed by varying surface currents. Wave height spectrum is computed by varying the upper layer depth of mixed layer from 5 m to 100 m with 1 m depth interval. The surface current field is assumed to move with the IWs, and is described by the KdV equation. The computed RCS is then compared with the RADARSAT-1 data, resulting in satisfactory agreement of the estimated depth of IWs with other data.
机译:通常在合成孔径雷达(SAR)图像中观察到海洋内波(IW)的表面特征,因为IW通过小规模海浪与IW感应的变化电流的相互作用来改变表面粗糙度。如果我们知道控制IW的垂直和水平参数之间的关系,则可以从SAR数据中估算出混合层深度(MLD),因为IW沿着水密度快速变化的明线传播。这项研究提出了一种使用SARSAT数据估算MLD的方法,该雷达图像是由RADARSAT-1在朝鲜半岛东部水域观察到的IW图像得出的。为了使用SAR数据解释IW,通过将小扰动模型应用于通过改变表面水流扰动的海面来计算后向散射雷达横截面。通过将混合层的上层深度从5 m更改为100 m,并以1 m的深度间隔来计算波高谱。假定表面电流场随IWs移动,并由KdV方程描述。然后将计算出的RCS与RADARSAT-1数据进行比较,从而使IW的估算深度与其他数据令人满意地吻合。

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