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Diffractive analysis of backscatter from wave-crest-like objects

机译:波峰般的物体反向散射分析的衍射分析

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The backscattering from surface profiles approximating the crests of steep water waves has been modeled using diffraction theory. The diffractive backscattering from rounded-apex wedges is due to diffraction from curvature discontinuities, and can be predicted with apex radil as small as one-third of a wavelength using standard diffraction coefficients provided that heuristic corrections are applied to account for the small radil and finite surface conductivity. The same diffraction theory can also be used to model the backscattering from surfaces that approximate the early formation of a jet on a breaking crest, although accuracy is a bit poorer when the crest-feature radii are one-third wavelength. This confirms that the limitations found in a previous study are due to the limitations of the model itself, and not due to the averaging of surface curvatures that were needed to allow the application of the model.
机译:从近似陡峭水波的表面轮廓的后散射已经使用衍射理论进行建模。来自圆形顶点楔形楔的衍射反向散射是由于曲率不连续的衍射,并且可以通过使用标准衍射系数的波长的三分之一的顶点径向预测,只要施加启发式校正以考虑小的radil和有限表面电导率。相同的衍射理论也可用于从近似近似喷射的早期形成的表面上的背散射,尽管当Crest特征半径是三分之一波长时,精度是较差的。这证实了先前研究中发现的限制是由于模型本身的局限性,而不是由于允许应用模型所需的表面曲率的平均值。

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