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Microwave backscattering from the sea surface with breaking waves

机译:微波从海面反向散射波

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Based on the effective medium approximation theory of composites, the whitecap-covered sea surface is treated as a medium layer of dense seawater droplets and air. Two electromagnetic scattering models of randomly rough surface are applied to the investigation of microwave backscattering of breaking waves driven by strong wind. The shapes of seawater droplets are considered by calculating the effective dielectric constant of the whitecap layer. The responses of seawater droplets shapes, such as sphere and ellipsoid, to the backscattering coefficient are discussed. Numerical results of the models are in good agreement with the experimental measurements of horizontally and vertically polarized backscattering at microwave frequency 13.9GHz and different incidence angles.
机译:根据复合材料的有效介质近似理论,将白盖覆盖的海面视为密集的水滴和空气的介质层。将两种随机粗糙表面的电磁散射模型用于研究强风驱动的破碎波的微波反向散射。通过计算白帽层的有效介电常数来考虑水滴的形状。讨论了球形和椭圆形等水滴形状对后向散射系数的响应。模型的数值结果与在微波频率13.9GHz和不同入射角下水平和垂直极化后向散射的实验测量结果非常吻合。

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