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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Estimated surface-wave contributions to radar Doppler velocity measurements of the ocean surface
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Estimated surface-wave contributions to radar Doppler velocity measurements of the ocean surface

机译:估计的表面波对海洋表面雷达多普勒速度测量的贡献

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摘要

For simulated ocean conditions, we estimate the magnitude of the Doppler velocity contributions produced by unresolved surface waves that typical spaceborne synthetic aperture radars (SAR) would measure. The mechanism for generating Doppler velocities is the correlation between wave phase and radar cross section. The contributions analyzed include those of linear gravity waves, second-order wave-wave interactions, Bragg-wave scatterers and breaking waves. For gravity waves, we consider both wave tilt and hydrodynamic modulation transfer functions (MTFs). We find that for nominal sea conditions, the Doppler velocity is significant, on the order of 1 m/s, and exhibits large variation as a function of incidence angle and look with respect to the sea direction. The most important contributors are gravity waves and the Bragg scatterers, followed by sea spikes. Effects produced by second-order wave solutions are argued to be inconsequential. (C) 2003 Elsevier Inc. All rights reserved. [References: 36]
机译:对于模拟的海洋条件,我们估算了由典型的星载合成孔径雷达(SAR)可以测量的未分辨表面波产生的多普勒速度贡献的大小。产生多普勒速度的机制是波相位和雷达横截面之间的相关性。分析的贡献包括线性重力波,二阶波-波相互作用,布拉格波散射和破碎波。对于重力波,我们同时考虑了波浪倾斜和流体动力调制传递函数(MTF)。我们发现,对于标称海况,多普勒速度非常大,约为1 m / s,并且随入射角和相对于海向的变化而呈现出较大的变化。最重要的因素是重力波和布拉格散射体,其次是海峰。二阶波动解产生的影响被认为是无关紧要的。 (C)2003 Elsevier Inc.保留所有权利。 [参考:36]

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