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Electromagnetic scattering and Doppler spectra analysis of sea surface covered by oil spills

机译:溢油覆盖海面的电磁散射和多普勒光谱分析

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Lombardini et al. [1] have demonstrated that the ripples on a sea surface covered by oil films exhibit a damping effect. The damping effect reduce the RMS slope and RMS height of the sea surface, and thus have an influence on the electromagnetic scattering features, as well as the Doppler spectra signature of the backscattered returns from dynamic sea surface. Consequently, electromagnet tic scattering and Doppler spectra analysis of one dimensional (1-D) dielectric sea surface covered by oil films is conducted in this paper based on parallel fast multiple method. The sea surfaces are modeled as realizations of a Gaussian random process with the Pierson-Moskowitz spectrum, while the tapered incident wave is chosen to reduce the truncation error. Several numerical results are presented to show the influence of the oil slicks on the angular distribution of the scattered intensities, as well as the Doppler spectra signature of the backscattered returns by comparison with a clean sea surface.
机译:Lombardini等。文献[1]证明,被油膜覆盖的海面上的涟漪具有阻尼作用。阻尼效应会降低海面的RMS斜率和RMS高度,从而影响电磁散射特征以及动态海面反向散射回波的多普勒频谱特征。因此,本文基于并行快速多重方法,对油膜覆盖的一维(一维)介电海面进行了电磁散射和多普勒光谱分析。将海面建模为使用Pierson-Moskowitz谱实现的高斯随机过程的实现,同时选择锥形入射波以减少截断误差。提出了几个数值结果,以显示浮油对散射强度的角分布的影响,以及与干净的海面相比,散射后的回波的多普勒光谱特征。

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