Diffraction from Sharply Peaked Waves As an Ocean Surface Scattering Mechanism

G. A. Jensen, J. Vesecky, R. Glazman
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引用次数: 6

Abstract

We have investigated the role of sharply peaked waves as a major Ocean scattering mechanism for radar. We constructed a prototype 3-dimensional wedge-like wave shape and analyzed how it scatters. Using results from the theory of the statistical geometry of the Ocean surface we estimate how may such wedges there are per unit area, as a function of sea conditions. Taking into account a directional distribution of the wedges, we estimated the total radar cross section due to wedge diffiraction effects. At large incidence angles wedge diffraction appears to be able to account for a significant amount of the radar cross section on the Ocean surface. This work is a major change from previous work in two ways. First, the wedge-like wave shape used here is a more realistic representation of sharply-peaked waves and second, the scale-size and spatial density of the wedge-like waves is computed directly from the wave-height spectrum.
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尖锐尖峰波的衍射作为海洋表面散射机制
我们研究了尖峰波作为雷达主要的海洋散射机制的作用。我们构建了一个三维楔形波形的原型,并分析了它的散射方式。利用海洋表面统计几何理论的结果,我们估计每单位面积上有多少这样的楔形,作为海况的函数。考虑到楔形的方向分布,我们估计了由于楔形衍射效应的总雷达横截面。在大入射角下,楔形衍射似乎能够解释海洋表面雷达横截面的很大一部分。这项工作在两个方面与以前的工作有很大的不同。首先,这里使用的楔形波浪形状是一个更真实的尖峰波的表示,其次,楔形波的尺度大小和空间密度是直接从波高谱计算出来的。
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