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Geoacoustic inversion using vector acoustic modal dispersion: a sensitivity study

机译:使用矢量声模态色散的地声反演:敏感性研究

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Geoacoustic inversion is traditionally performed using sound pressure data. In this paper, we present a sensitivity study of geoacoustic inversion using particle velocity, as recorded on a single vector sensor. The scope of the study is further restricted to shallow water and low-frequency impulsive sources. If propagating modes can be separated, then four vector acoustic metrics can be formed by coherent combination of pressure and velocity: phase speed, circularity, depth-dependent mode speed of energy, and vertical component of normalized reactive intensity. Each of these vector metric can be used as an input for geoacoustic inversion. Their sensitivity to seabed geoacoustic parameter is illustrated on a simulated scenario that reproduce the Seabed Characterization Experiment (SBCEX) that took place on the New England Mud Patch in 2017. Results are compared with inversion results obtained using group speed as input data. All the vector metrics but phase speed have a better sensitivity to seabed parameters than modal group speeds.
机译:传统上使用声压数据进行地理声反转。在本文中,我们在单个载体传感器上记录了使用粒子速度的地理声反应性的敏感性研究。该研究的范围进一步仅限于浅水和低频冲动源。如果可以分离传播模式,则可以通过压力和速度的相干组合形成四个向量声学度量:相速,圆形度,能量深度依赖性模式速度和归一化反应强度的垂直分量。这些矢量度量中的每一个可以用作地理声反转的输入。它们对海底地理声学参数的敏感性在2017年再现了在新英格兰泥浆补丁上进行的海底表征实验(SBCEX)的模拟场景。结果与使用组速度作为输入数据获得的反演结果进行了比较。所有载体度量,但相速对海底参数具有比模态群速度更好的敏感性。

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