Geoacoustic Inversion of Airgun Data Under Influence of Internal Waves
Autor: | Hefeng Dong, Mohsen Badiey, N. Ross Chapman |
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Rok vydání: | 2017 |
Předmět: |
010505 oceanography
Mechanical Engineering Acoustics 010401 analytical chemistry Ocean Engineering Inversion (meteorology) Internal wave 01 natural sciences Sound intensity Standard deviation 0104 chemical sciences Modal Wind wave Broadband Electrical and Electronic Engineering Seabed Geology Seismology 0105 earth and related environmental sciences |
Zdroj: | IEEE Journal of Oceanic Engineering. 42:632-638 |
ISSN: | 2373-7786 0364-9059 |
DOI: | 10.1109/joe.2016.2611763 |
Popis: | In this paper, broadband airgun data from the 1995 Shallow Water Acoustics in Random Media (SWARM'95) experiment are analyzed to study the influence of internal waves on sound propagation and modal behavior, and the subsequent effects on geoacoustic inversion. Modal behavior and fluctuation due to sound intensity focusing and defocusing, when the leading front of internal waves is parallel to and approaches or passes through the acoustic propagation track, are presented. A modal filtering technique, the time-warping transform, is applied to the airgun data to resolve dispersed modes. The extracted modes are used to estimate seabed model parameters by geoacoustic inversion. Two scenarios, defocusing and focusing periods containing 14 events, are selected for study. Seven data sets for each type (defocusing or focusing) are analyzed to extract dispersion curves and carry out geoacoustic inversion. The inversion results for each type of the events are similar with a small standard deviation from the mean. However, the mean values and standard deviations for the defocusing and focusing types are quite different. The impacts of internal waves on inversion results are presented and discussed. |
Databáze: | OpenAIRE |
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