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Small-slope simulation of acoustic backscatter from a physical model of an elastic ocean bottom

机译:弹性海底物理模型对声学反向散射的小斜率模拟

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An underwater acoustic experiment with a two-dimensional rough interface, milled from,a slab of PVC, was performed at a tank facility. The purpose was to verify the predictions of numerical models of acoustic rough surface scattering, using a manufactured physical model of an ocean bottom that featured shear effects, nonhomogeneous roughness statistics, and root-mean-square roughness amplitude on the order of the acoustic wavelength. Predictions of the received time series and interface scattering strength in the 100-300 kHz band were obtained from the Bottom Reverberation from Inhomogeneities and Surfaces-Small-Slope Approximation, (BORIS-SSA) numerical scattering model. The predictions were made using direct measurements of scattering model inputs-specifically, the geoacoustic properties from laboratory analysis of material samples and the grid of surface heights from a touch-trigger probe. BORIS-SSA predictions for the amplitude of the received time series were shown to be accurate with a root-mean-square residual error of about 1 dB, while errors for the scattering strength prediction were higher (2-3.5 dB). The work is part of an ongoing effort to use physical, models to examine a variety of acoustic scattering and propagation phenomena involving the ocean bottom.
机译:在水箱设备上进行了一个由二维的PVC板研磨而成的具有二维粗糙界面的水下声学实验。目的是使用制造的海底物理模型来验证声学粗糙表面散射数值模型的预测,该物理模型具有剪切效应,非均匀粗糙度统计量和均方根粗糙度振幅(按声波波长顺序)。从不均匀性和表面-小斜率近似值(BORIS-SSA)数值散射模型的底部混响获得了在100-300 kHz频带中接收到的时间序列和界面散射强度的预测。这些预测是通过直接测量散射模型的输入来进行的-具体来说,是通过对材料样本进行实验室分析得出的地声特性,以及通过触发式探针得出的表面高度的网格。结果表明,对接收到的时间序列的幅度进行的BORIS-SSA预测是准确的,均方根残留误差约为1 dB,而散射强度预测的误差较高(2-3.5 dB)。这项工作是使用物理模型检查涉及海底的各种声波散射和传播现象的持续努力的一部分。

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