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Subbottom profiling using a ship towed line array and geoacoustic inversion

机译:使用船拖式线阵和地声反演进行底下剖面分析

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Bottom profiling traditionally uses broadband signals received on a line array at long ranges to estimate the bottom layer structure and thickness. In this paper, a subbottom profiling method is developed and applied to a ship-towed line array using the same ship towed source to estimate the subbottom layer structure and thickness. A ship towed line-array system can be used to estimate bottom properties using geoacoustic inversion and can cover a wide area in a short time. It needs some prior information about the subbottom structure and layer thickness, without which the solution can be ambiguous and even erratic when resolving parameters over a wide area. It is shown that the required subbottom information can be obtained from the time-angle relation by beamforming the same acoustic signal data used for geoacoustic inversion. The time-angle analysis is used to expose the prevalent physics intrinsic to geoacoustic inversion. One finds that the tau-p relation of the bottom and the bottom reflection coefficients, sampled at discrete angles associated with bottom and multiple surface-bottom returns, are often adequate,. for many practical applications, to uniquely determine the geoacoustic bottom at low (<= 1 kHz) frequencies.
机译:传统上,底部轮廓分析使用在长距离范围内的线阵列上接收的宽带信号来估计底层结构和厚度。在本文中,开发了一种底部轮廓分析方法,并将其应用于使用相同的船舶牵引源的船舶牵引线阵列,以估计底部底部层的结构和厚度。船用拖曳线阵系统可用于通过地声反演估算海底物性,并可在短时间内覆盖大范围区域。它需要有关底下结构和层厚度的一些先验信息,否则,在宽范围内解析参数时,解决方案可能会变得模棱两可甚至不稳定。示出了可以通过对用于地声反演的相同声信号数据进行波束成形来从时间-角度关系获得所需的底部信息。时间角分析用于揭示地声反演固有的普遍物理学。人们发现,底部和底部反射系数的tau-p关系在与底部和多个表面-底部回波相关的离散角度采样时,通常就足够了。对于许多实际应用,可以唯一确定低频(<= 1 kHz)频率下的地声底部。

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