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首页> 外文期刊>The Journal of the Acoustical Society of America >Source depth and the spatial coherence of ambient noise in the ocean
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Source depth and the spatial coherence of ambient noise in the ocean

机译:海洋中源深度和环境噪声的空间相干性

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摘要

An analytical model is developed for the vertical coherence of the ambient noise field generated by a plane of sources at a finite depth beneath the ocean surface. To clarify the effects of source depth on the noise field, the relatively simple case of a semi-infinite ocean with an isovelocity profile is considered. The expression derived for the coherence is exact; it depends on the source depth explicitly, and it includes the homogeneous and inhomogeneous components of the field. When the sources are shallow, that is, the source depth is much less than a wavelength and the source–image pairs act as dipoles, the coherence is an oscillatory function of frequency, consistent with an earlier theory of noise coherence in deep water. With deeper sources, the dipole description fails and the coherence function becomes approximately independent of frequency. This change of character suggests that the spatial structure of the noise field at depth in the ocean could be inverted to yield information on the acoustic properties of the bubble sources associated with breaking surface waves.
机译:针对海洋表面下方有限深度处的源平面所产生的环境噪声场的垂直相干性,开发了一种解析模型。为了阐明声源深度对噪声场的影响,考虑了具有等速剖面的半无限海洋的相对简单情况。为连贯而导出的表达式是精确的;它明确地取决于震源深度,并且包括场的均匀和不均匀分量。当源较浅时,即源深度远小于波长,并且源-图像对充当偶极子时,相干性是频率的振荡函数,这与较早的深水中噪声相干性理论一致。对于更深的源,偶极子描述将失败,并且相干函数将变得与频率无关。这种性质的变化表明,可以反转海洋深处噪声场的空间结构,以产生有关与破裂表面波有关的气泡源的声学特性的信息。

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