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首页> 外文期刊>The Journal of the Acoustical Society of America >Small-slope scattering from rough elastic ocean floors: General theory and computational algorithm
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Small-slope scattering from rough elastic ocean floors: General theory and computational algorithm

机译:来自粗糙弹性海底的小坡度散射:一般理论和计算算法

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摘要

In this article acoustic scattering by a random rough interface that separate a fluid incident medium from an underlying uniform scattering medium, either fluid or elastic solid, in cases for which the Bragg scale lies within the power-law tail of the roughness spectrum is dealt with. The physical foundation is an inherently reciprocity-preserving, local small-slope theory. A fully bistatic formulation is developed for the scattering strength, together with a robust numerical implementation that allows a wide range of spectral exponent values. The practical result for ocean acoustics is a significantly improved description of the interface component of sea floor scattering. Calculations are presented to demonstrate the advantage of this approach over perturbation theory, and to illustrate its dependence on frequency and environmental parameters as well as its operation in bistatic geometries.
机译:在本文中,当布拉格尺度位于粗糙度谱的幂律尾部内时,通过随机粗糙界面进行声散射,该粗糙界面将流体入射介质与下面的均匀散射介质(流体或弹性固体)分离开来。物理基础是固有的保持互惠的局部小斜率理论。开发了一种用于散射强度的完全双静态公式,以及一个鲁棒的数值实现方法,该方法允许较大范围的光谱指数值。海洋声学的实际结果是对海床散射界面成分的显着改进。进行了计算,以证明该方法相对于扰动理论的优势,并说明了其对频率和环境参数的依赖性以及其在双静态几何中的操作。

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