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首页> 外文期刊>Journal of Physical Oceanography >Mapping Surface Currents and Waves with Interferometric Synthetic Aperture Radar in Coastal Waters: Observations of Wave Breaking in Swell-Dominant Conditions
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Mapping Surface Currents and Waves with Interferometric Synthetic Aperture Radar in Coastal Waters: Observations of Wave Breaking in Swell-Dominant Conditions

机译:用干涉合成孔径雷达绘制近海水面的海流和海浪:在占优势的条件下观测海浪的观测

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摘要

Airborne and spaceborne interferometric synthetic aperture radars (InSARs) produce surface velocity measurements at very high spatial resolutions over a large area. The data allow construction of the velocity strain field for highlighting ocean surface processes such as wave breaking and rip currents. Also, coherence between signals from two interferometric channels is a descriptor of the correlation condition of the surface roughness that scatters back the radar signals and it is an indication of the ocean surface turbulence. Wave breaking is a major turbulence source causing surface roughness decorrelation, thus the coherence parameter serves as an independent means for detecting wave breaking. The results of breaking detection using roughness decorrelation and critical local acceleration are comparable. In this paper, the breaking fraction in swell-dominant mixed seas along a cross-shore transect is compared with several steepness parameters characterizing different length scales of surface waves. The highest correlation coefficient (from 0.90 to 0.99) is between the breaking fraction and windsea mean square slope contributed primarily by short waves. This result reinforces the previous field observations showing that the length scales of breaking waves are much shorter than the energetic components near the spectral peak, although dominant waves and the associated wave group modulation are important in triggering the breaking process. The large spatial coverage of airborne or spaceborne operation further offers the opportunity to investigate evolution of the surface wave spectrum in high spatial (subkilometer) resolution. This capability is very useful for monitoring the coastal wave and current environment.
机译:机载和星载干涉式合成孔径雷达(InSAR)可以在很大的区域内以很高的空间分辨率进行表面速度测量。数据允许构造速度应变场,以突出海洋表面过程,例如波浪破碎和裂隙水流。而且,来自两个干涉测量通道的信号之间的相干性是散射回雷达信号的表面粗糙度的相关条件的描述,并且是海洋表面湍流的指示。破波是引起表面粗糙度去相关的主要湍流源,因此相干参数用作检测破波的独立手段。使用粗糙度解相关和临界局部加速度的断裂检测结果是可比的。在本文中,将跨岸样带的占优势的混合海中的破碎分数与表征不同表面波长度尺度的几个陡度参数进行了比较。最高相关系数(从0.90到0.99)在断裂分数和主要由短波贡献的风海均方斜率之间。该结果加强了先前的现场观察结果,表明破裂波的长度尺度比光谱峰值附近的高能分量短得多,尽管主导波和相关的波群调制在触发破裂过程中很重要。机载或星载作战的大空间覆盖率进一步为研究高空间(亚千米)分辨率的表面波谱的演化提供了机会。此功能对于监视海浪和当前环境非常有用。

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  • 来源
    《Journal of Physical Oceanography》 |2013年第3期|563-582|共20页
  • 作者单位

    Remote Sensing Division, Naval Research Laboratory, 4555 Overlook Avenue SW, Washington, DC 20375;

    Remote Sensing Division, Naval Research Laboratory, 4555 Overlook Avenue SW, Washington, DC 20375;

    Remote Sensing Division, Naval Research Laboratory, 4555 Overlook Avenue SW, Washington, DC 20375;

    Remote Sensing Division, Naval Research Laboratory, 4555 Overlook Avenue SW, Washington, DC 20375;

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