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首页> 外文期刊>Acustica >Distributed source method for retrieval of the cross-sectional contour of an impenetrable cylindrical obstacle immersed in a shallow water waveguide
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Distributed source method for retrieval of the cross-sectional contour of an impenetrable cylindrical obstacle immersed in a shallow water waveguide

机译:分布式源方法用于检索浸入浅水波导中的不可穿透圆柱障碍物的横截面轮廓

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摘要

The nonlinear retrieval of me cross-sectional contour of a sound-soft or sound-hard, closed cylindrical obstacle which is fully immersed in the water column of a shallow water waveguide is investigated. Time-harmonic pressure field data are acquired on two nearby vertical arrays when the obstacle is illuminated by a line source operated at one or at best two discrete frequencies. These data are inverted by a distributed source method. This involves the minimization of a two-term cost functional which is characteristic of the fit between data and wavefield associated to a test obstacle, and of the satisfaction of the boundary condition on the contour of this test obstacle. The method relies on the modeling of the acoustic wavefields as a superposition of elementary waves (the Green's functions of the waveguide) and uses the smoothness of the sought contour as a main constraint. Numerical experimentation shows that it yields good shape reconstructions for soft, and at a lesser extent hard, obstacles above a sedimentary fluid-like sea bottom of low as well as of high contrast using a fairly limited dataset (with some substantial improvement using the two frequencies), whereas it has the potential for generalization to elastic bottom layers as well as to obstacles fully buried in the bottom. [References: 22]
机译:研究了完全浸入浅水波导的水柱中的声软或声硬,封闭圆柱障碍物的横截面轮廓的非线性获取。当障碍物被以一个或最多两个离散频率运行的线光源照射时,在两个附近的垂直阵列上获取时谐压力场数据。这些数据通过分布式源方法反转。这包括使两项成本函数最小化,该函数是数据和与测试障碍物相关的波场之间的拟合以及该测试障碍物轮廓上边界条件的满足的特征。该方法依赖于将声波场建模为基本波的叠加(波导的格林函数),并将所寻找轮廓的平滑度作为主要约束条件。数值实验表明,使用相对有限的数据集,可以对低和高对比度的沉积流体状海底上方的软障碍物(在较小程度上为硬障碍物)产生良好的形状重构(使用这两种频率有一些实质性的改进) ),而它有可能泛化到弹性底层以及完全埋在底层的障碍物。 [参考:22]

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