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Features of the Energy Structure of Acoustic Fields in the Ocean with Two-Dimensional Random Inhomogeneities

机译:具有二维随机不均匀性海洋声场能量结构的特征

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摘要

The paper is devoted to the analytic study and numerical simulation of mid-frequency acoustic signal propagation in a two-dimensional inhomogeneous random shallow-water medium. The study was carried out by the cross section method (local modes). We present original theoretical estimates for the behavior of the average acoustic field intensity and show that at different distances, the features of propagation loss behavior are determined by the intensity of fluctuations and their horizontal scale and depend on the initial regular parameters, such as the emission frequency and size of sound losses in the bottom. We establish analytically that for the considered waveguide and sound frequency parameters, mode coupling effect has a local character and weakly influences the statistics. We establish that the specific form of the spatial spectrum of sound velocity inhomogeneities for the statistical patterns of the field intensity is insignificant during observations in the range of shallow-water distances of practical interest.
机译:本文致力于二维不均匀随机浅水介质中频率声学信号传播的分析研究和数值模拟。该研究由横截面方法(局部模式)进行。我们为平均声场强度的行为提供了原始理论估计,并表明在不同的距离处,传播损耗行为的特征由波动强度和水平衡的强度决定,并取决于初始常规参数,例如发射底部声音损失的频率和大小。我们在分析上建立了,对于考虑的波导和声频参数,模式耦合效果具有局部性质,弱影响统计数据。我们建立了在实际兴趣的浅水距离范围内的观察期间,对场强的统计模式的空间速度不均匀的特定形式是微不足道的。

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