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The Influence of Sediment Thickness on Vertical Coherence of Ambient Noise in Shallow Water

机译:沉积物厚度对浅水环境噪声垂直相干的影响

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The ambient noise field in shallow water is contributed to by many noise sources and it is also influenced by environment boundaries. The ambient noise field strongly depends on the properties of the seabed, so it is often used for undertaking geoacoustic inversion. Geoacoustic inversion is performed using either vertical coherence or directionality, as these are relatively stable features of noise and are largely determined by the seabed. Certain parameters of the seabed, such as the sound speed, density and attenuation are usually the focus in this field of research. However, an additional parameter, namely the thickness of the sediment, also has a significant effect on the ambient noise field. The purpose of this paper is to determine the effect of sediment thickness on the ambient noise field in shallow water. In the first step, a model is constructed, with the shallow water divided into three layers - water, sediment and elastic seabed. The vertical coherence is obtained from the ambient noise model which is based on normal mode theory. Once the model is completed, simulations are performed on two key aspects in order to determine how sediment thickness influences vertical coherence. In the first simulation, all parameters except for the sediment thickness are kept constant. The result from the first simulation shows that the coherence curve becomes increasingly flat with the increase of sediment thickness. In the second simulation, four thicknesses are chosen, 0.5m, 1m, 2m, 10m respectively. For each thickness, four vertical coherence curves for different sound speeds and attenuation are plotted in the same figure. By comparing these four figures, it is seen that the vertical coherence becomes less sensitive to the parameters in the seabed with the increase of sediment thickness. Once the sediment thickness exceeds 1m, the curve remains nearly unchanged with changes in the shear wave speed and attenuation in the seabed. However, the vertical coherence is still sensitive to the compressional wave speed. Therefore, the thickness of sediment plays an important role in geoacoustic inversion. When the sediment is deep enough, the vertical coherence can only be used to undertake inversion on compressional wave speed rather than on other parameters.
机译:浅水中的环境噪声场是贡献的许多噪声源,它也受到环境边界的影响。环境噪声场强烈取决于海底的性质,因此通常用于进行地理声反应。使用垂直一致性或方向性进行地理声反转,因为这些噪声具有相对稳定的特征,并且主要由海底决定。海底的某些参数,例如声速,密度和衰减通常是该研究领域的重点。然而,附加参数即沉积物的厚度,对环境噪声场具有显着影响。本文的目的是确定沉积物厚度对浅水中环境噪声场的影响。在第一步中,构造了一种模型,浅水分为三层 - 水,沉积物和弹性海底。从基于正常模式理论的环境噪声模型获得垂直相干性。一旦模型完成,就会在两个关键方面执行仿真,以确定沉积物厚度如何影响垂直相干性。在第一次模拟中,除了沉积物厚度之外的所有参数都保持恒定。由第一仿真的结果表明,随着沉积物厚度的增加,相干曲线变得越来越平。在第二模拟中,选择四个厚度,0.5m,1m,2m,10m。对于每个厚度,在同一图中绘制了不同声速和衰减的四条垂直相干曲线。通过比较这四个图,可以看出,随着沉积物厚度的增加,垂直一致性对海底的参数变得不太敏感。一旦沉积物厚度超过1M,曲线就会随着剪力波速度的变化和海底衰减而几乎不变。然而,垂直相干性仍然对压缩波速敏感。因此,沉积物的厚度在地理声反转中起重要作用。当沉积物足够深,垂直相干性只能用于对压缩波速的反演而不是在其他参数上进行反转。

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