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首页> 外文期刊>Acoustical physics >Illumination of the shadow zone in a two-channel oceanic waveguide with a fine structure of sound speed inhomogeneities
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Illumination of the shadow zone in a two-channel oceanic waveguide with a fine structure of sound speed inhomogeneities

机译:具有声速不均匀性的精细结构的两通道海洋波导中阴影区的照明

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摘要

The experimental data on the sound field structure, which were obtained by emitting a continuous pseudonoise signal (a midfrequency of 3.2 kHz) in a two-channel oceanic waveguide, are compared with the calculations performed by the wave program with allowance for the fine structure of the sound speed inhomogeneities. A considerable increase in the intensity of the sound field with a definite angular spectrum is observed in the upper channel in the first shadow zone, and, in the experiment, the increase begins nearer to the sound source than predicted by the wave and ray calculations for a smooth sound speed profile. These features of the field structure are explained by the illumination of the shadow zone by the regular scattering of signals from highly anisotropic fine-structure inhomocreneities of the sound speed profile, which are clearly pronounced in the region of the given oceanic experiment.
机译:通过在两通道海洋波导中发射连续的伪噪声信号(中频为3.2 kHz)获得的声场结构实验数据,与通过波程序进行的计算进行了比较,并考虑到了精细结构。声速不均匀。在第一个阴影区域的上部通道中,观察到具有确定角度频谱的声场强度显着增加,并且在实验中,这种增加开始于比声波计算所预测的更接近声源的位置。平滑的声速曲线。场结构的这些特征可以通过声速剖面的高度各向异性精细结构非均匀性信号的规则散射来对阴影区域进行照明来解释,这在给定的海洋实验范围内很明显。

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