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Roughness influence on multibeam-subbottom-profiler specular echoes and roughness parameter inversion

机译:粗糙度对多区域 - 副分析镜镜面回声和粗糙度参数反转的影响

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摘要

Integral solutions for wave scattering over slightly rough surfaces generally include the source and receiver directivity. In this paper, it is shown that integrating the point source, point receiver solution over the source and receiver apertures leads to solutions with a clear physical interpretation. The scintillation, time-of-arrival, and direction-of-arrival spatial covariances of the specular echo are derived for a multibeam-subbottom-profiler configuration and result in surface integrals that can be evaluated numerically. In addition, algebraic expressions are obtained for the variances when the roughness has a Gaussian autocorrelation function and the source and receiver arrays have Gaussian apodization functions. Variances obtained from a numerical evaluation of the surface integrals compare well with estimates from a realistic three-dimensional numerical experiment. A simple inversion scheme is used to extract the roughness parameters from the numerical experiment signals. (C) 2018 Acoustical Society of America.
机译:用于略微粗糙表面的波散射的积分解通常包括源和接收方向性。在本文中,示出了对源极和接收器孔的点源,点接收器解决方案集成到具有清晰物理解释的解决方案。镜面回波的闪烁,到达时间和到达时间空间Coverces用于多波米 - 子字体 - 分析器配置,并导致可以在数字上进行评估的表面积分。另外,当粗糙度具有高斯自动相关函数并且源和接收器阵列具有高斯叠加功能时,获得了差异的代数表达式。从表面积分的数值评估获得的差异与逼真的三维数值实验的估计相比很好。简单的反转方案用于从数值实验信号中提取粗糙度参数。 (c)2018年声学学会。

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