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A modal/WKB inversion method for determining sound speed profiles in the ocean); (Degree of Ocean bottom

机译:确定海洋声速剖面的模态/ WKB反演方法; (海底度

摘要

Two approaches to determining the ocean sound profile using measured acoustic modal eigenvalues are examined. Both methods use measured eigenvalues and mode dependent assumed values of the WKB phase integral as input data and use the WKB phase integral as a starting point for relating the index of refraction to depth. Inversion method one is restricted to monotonic or symmetric sound speed profiles and requires a measurement of the sound speed at one depth to convert the index of refraction profile to a sound speed profile. Inversion method two assumes that the sound speed at the surface and the minimum sound speed in the profile are known and is applicable to monotonic profiles and to general single duct sound speed profiles. For asymmetric profiles, inversion method two gives the depth difference between two points of equal sound speed in the portion of the profile having two turning points, and in the remainder of the profile it gives sound speed versus depth directly. A numerical implementation of the methods is demonstrated using idealized ocean sound speed profiles numerical experiments used to test the performance of the inversions using noisy data. The two methods are used to determine the sediment sound speed profiles in two shallow water waveguide models, and inversion method one is used to find the sediment sound speed profile using data from an experiment performed in the Gulf of Mexico. Theses. (edc)
机译:研究了使用测得的声学模态特征值确定海洋声廓的两种方法。两种方法都使用WKB相积分的实测特征值和模式相关的假定值作为输入数据,并使用WKB相积分作为将折射率与深度相关联的起点。反演方法之一限于单调或对称的声速分布,并且需要在一个深度处测量声速,以将折射率分布转换为声速分布。反演方法二假设表面声速和剖面中的最小声速是已知的,并且适用于单调剖面和一般的单导管音速剖面。对于非对称轮廓,在轮廓的具有两个转折点的部分中,反演方法2给出了相等声速的两个点之间的深度差,在轮廓的其余部分中,它直接给出了声速与深度的关系。使用理想的海洋声速剖面数值实验证明了该方法的数值实现,该数值实验用于使用噪声数据测试反演的性能。这两种方法用于确定两个浅水波导模型中的沉积物声速剖面,而反演方法之一是使用来自墨西哥湾进行的实验数据来找到沉积物声速剖面。论文。 (edc)

著录项

  • 作者

    Casey Kevin Donald;

  • 作者单位
  • 年度 1988
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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