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Modulation of a high-frequency shallow-water acoustic channel by sea surface waves: 3-D PE-based modeling

机译:海面波调制高频浅水声学通道:3-D基于PE的建模

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The three-dimensional parabolic equation acoustic propagation model (3DPE) of Collins and Chin-Bing is adapted to investigate the propagation of a high-frequency (2-kHz) signal in a shallow-water acoustic channel under two-dimensional ocean surfaces disturbed by gravity and capillary waves. Empirically-derived surface wave-number spectra of Pierson and Moskowitz and of Donelan and Pierson are used to construct realizations of stationary Gaussian models of the sea surface. The modified 3DPE model is applied to compute the acoustic field in a waveguide consisting of two isovelocity layers (water and thick sediment). The effects of scattering by the sea surface on the vertical/azimuthal distribution of energy arriving at the receiver are investigated by (1) beamforming the computed acoustic field over subsets of the 2-D computational mesh at the receiver range and (2) computing horizontal and vertical field correlation across subsets of the mesh. For the case of an isotropic surface wave spectrum, the field correlation estimates are derived by averaging correlation samples over multiple 2-D subarrays placed over 360° of azimuth. The angle dependence of the beam responses and the depth and cross-range dependence of the field correlation are interpreted in terms of the surface scattering effects.
机译:Collins和Chin-Bing的三维抛物线方程声学传播模型(3DPE)适于研究高频(2-KHZ)信号在浅水声道中的二维海洋表面下的浅水声道中的传播重力和毛细管波。 Pierson和Moskowitz和Donelan和Pierson的经验衍生的表面波号光谱用于构建海面固定高斯模型的实现。修改的3DPE模型应用于计算由两个等幂层(水和厚沉积物)组成的波导中的声场。通过(1)在接收器范围内的2-D计算网格的子集和(2)水平水平的2-D计算网格的子集中,研究了海面对到达接收器的能量垂直/方位形分布的垂直/方位形分布的影响网格子集的垂直场相关性。对于各向同性表面波频谱的情况,通过在超过360°的方位角超过360°的多个2-D子阵列上平均相关性采样来导出场相关估计。在表面散射效果方面解释了光束响应的角度依赖性和场相关的深度和跨距离的依赖性。

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