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Scattering effects of internal waves in the shallow-water ocean environment

机译:内波在浅水海洋环境中的散射效应

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The effects on acoustic energy caused by variations in the ocean environment have long been of interest to the ocean acoustics community. The shallow-water environment can be highly variable on both temporal and spatial scales. An example of shallow water environmental variability is the phenomena of internal waves. Under certain constraints, such as the spatial extent of the internal wave and the acoustic frequency, internal waves can produce very significant effects (on the order of 20 dB) on the propagation of acoustic energy. Depending on the geometry of the source and the target, the presence of an internal wave can either enhance or degrade the strength of a signal. In this work we (1) demonstrate the redistribution of acoustic energy that can be caused by the presence of shallow water internal waves, (2) show that this loss in propagated energy involves mode conversion coupled with a lossy shallow water bottom, and (3) illustrate that this phenomena can occur at a variety of frequencies that are dependent on the soliton's varying size and physical configuration. A significant implication is that solitons could be a possible explanation for the anomalous shallow-water propagation loss observed at a number of different frequencies.
机译:海洋环境变化引起的声能量对海洋声学界感到厚视。在时间和空间尺度上,浅水环境可以高度变化。浅水环境变异性的一个例子是内波的现象。在某些约束下,例如内部波的空间程度和声频,内部波可以在声能量的传播上产生非常显着的影响(大约20dB)。根据源和目标的几何形状,内部波的存在可以增强或降低信号的强度。在这项工作中,我们(1)证明了可以通过浅水内波的存在引起的声能的再分布,(2)表明传播能量的这种损失涉及与有损浅水底部的模式转换,(3 )示出了这种现象可以在各种频率发生,这些频率取决于孤子的不同尺寸和物理配置。显着的含义是孤子可以是在许多不同频率下观察到的异常浅水传播损失的可能解释。

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