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Remote Sensing of Organic Films on the Water Surface Using Dual Co-Polarized Ship-Based X-/C-/S-Band Radar and TerraSAR-X

机译:使用双共热船舶的X-/ C- / S波段和Terrasar-X遥感水面上有机薄膜的有机薄膜

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摘要

Microwave radar is a well-established tool for all-weather monitoring of film slicks which appear in radar imagery of the surface of water bodies as areas of reduced backscatter due to suppression of short wind waves. Information about slicks obtained with single-band/one-polarized radar seems to be insufficient for film characterization; hence, new capabilities of multi-polarization radars for monitoring of film slicks have been actively discussed in the literature. In this paper the results of new experiments on remote sensing of film slicks using dual co-polarized radars—a satellite TerraSAR-X and a ship-based X-/C-/S-band radar—are presented. Radar backscattering is assumed to contain Bragg and non-Bragg components (BC and NBC, respectively). BC is due to backscattering from resonant cm-scale wind waves, while NBC is supposed to be associated with wave breaking. Each of the components can be eliminated from the total radar backscatter measured at two co-polarizations, and contrasts of Bragg and non-Bragg components in slicks can be analyzed separately. New data on a damping ratio (contrast) characterizing reduction of radar returns in slicks are obtained for the two components of radar backscatter in various radar bands. The contrast values for Bragg and non-Bragg components are comparable to each other and demonstrate similar dependence on radar wave number; BC and NBC contrasts grow monotonically for the cases of upwind and downwind observations and weakly decrease with wave number for the cross-wind direction. Reduction of BC in slicks can be explained by enhanced viscous damping of cm-scale Bragg waves due to an elastic film. Physical mechanisms of NBC reduction in slicks are discussed. It is hypothesized that strong breaking (e.g., white-capping) weakly contributes to the NBC contrast because of “cleaning” of the water surface due to turbulent surfactant mixing associated with wave crest overturning. An effective mechanism of NBC reduction due to film can be associated with modification of micro-breaking wave features, such as parasitic ripples, bulge, and toe, in slicks.
机译:微波雷达是一个良好的薄膜光滑的全天候监测工具,它出现在水体表面的雷达图像中,作为由于抑制短风波而导致的反向散射的区域。有关单带/单极化雷达获得的光滑的信息似乎不足以薄膜表征;因此,在文献中讨论了用于监测用于监测电影光滑的多极化雷达的新能力。本文介绍了使用双共聚雷达 - 卫星实践 - 卫星实体 - 卫星轨道和船舶X-/ C-/ S波段遥感研究的新实验的结果。假设雷达反向散射分别包含布拉格和非布拉格组件(分别为BC和NBC)。 BC是由于谐振CM级风波的反向散射,而NBC应该与波断裂相关联。可以从两个共偏振中测量的总雷达反向散射可以消除每个组件,并且可以分别分别分别分别分别分析光滑的布拉格和非布拉格组分的对比度。在各种雷达带中的雷达反向散射器的两个分量获得了表征雷达返回的阻尼比(对比度)的新数据。布拉格和非布拉格组件的对比度值彼此相当,并证明对雷达波数的类似依赖性; BC和NBC对比单调,对于逆风和向下观测的情况,并且随着横向风向的波数弱差。可以通过增强由于弹性膜的CM级布拉格波的增强粘性阻尼来解释光滑的BC。讨论了NBC减少光滑的物理机制。假设强烈断裂(例如,白色封端)由于与波峰倾覆相关的湍流表面活性剂混合而导致的水面的“清洁”对NBC形成效果毫无效益。由于薄膜引起的NBC减少的有效机制可以与微突破波特征的修改相关,例如寄生波纹,凸起和脚趾。

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