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Directional characteristics of sea-wave scattering observed at low-grazing angles

机译:低掠角观测到的海浪散射的方向特性

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The mathematical and statistical description of waves on the sea surface has evolved over more than two centuries starting with Laplace (1776), Gerstner (1802), Airy (1845), Stokes (1847), Kelvin (1887), and Helmholtz (1888). Most of the major developments in this century are summarized by Apel (see J. Geophys. Res., vol.99, no.C8, p.16269-91, 1994) who has derived an improved model for the ocean surface wave vector spectrum of equilibrium sea states. Part of the motivation for this paper is Apel's observation that "...in spite of the incorporation of an anisotropic angular distribution of wave energy, the observed azimuthal variation of radar scatter is not captured..." The data set analysis summarized in this paper show that wave group processes are responsible for directionally organized sea surface radar back scattering patterns, which are long lived and consequently extend over large areas. This includes crosswind traveling wave systems. A property of wave group process structure is the steepening of waves as they pass through the center of the group. The mid-group sharpening of the waves, which can include crest spilling or breaking, significantly increases the radar scattering cross section observable with low grazing angle radars, usually most noticeable with horizontal (HH) polarization. Therefore, low grazing angle (LGA) radar provides a vastly improved means of seeing wavegroup phenomena over conventional oceanographic methods.
机译:从拉普拉斯(1776),格斯特纳(1802),艾里(1845),斯托克斯(1847),开尔文(1887)和亥姆霍兹(1888)开始,海面波浪的数学和统计描述已经发展了两个多世纪。 。 Apel总结了本世纪的大多数主要发展(请参见J. Geophys。Res。,第99卷,第C8号,第16269-91页,1994年),他推导了一种改进的海面波矢量频谱模型。平衡海洋状态。本文的部分动机是Apel的观察结果,即“ ...尽管合并了波能的各向异性角分布,但未捕获观察到的雷达散射的方位角变化...”本文总结了数据集分析。论文表明,波群过程是定向组织的海面雷达反向散射模式的原因,该模式长期存在,因此扩展到大面积区域。这包括侧风行波系统。波浪群过程结构的一个特性是,波浪在穿过群中心时会变陡。中波的锐化(可能包括波峰溢出或破裂)显着增加了低掠角雷达(通常在水平(HH)极化时最明显)观察到的雷达散射截面。因此,与传统的海洋学方法相比,低掠角(LGA)雷达极大地改善了观察波群现象的手段。

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