Title :
Inversion for Range-Dependent Sediment Compressional-Wave-Speed Profiles From Modal Dispersion Data
Author :
Rajan, Subramaniam D. ; Becker, Kyle M.
Author_Institution :
Sci. Solutions, Inc., Nashua, NH, USA
Abstract :
A perturbative inversion method for estimating sediment compressional-wave-speed profiles from modal travel-time data is extended to include range-dependent environments. The procedure entails dividing a region into range-independent sections and obtaining estimates of the sediment properties for each region. Inversion results obtained using synthetic data show that range-dependent properties can be obtained if an experiment is designed to include multiple source/receiver combinations. This approach is applied to field data collected during the 2006 Shallow Water Experiment (SW06). The sediment compressional-wave-speed profiles resulting from analysis of the field data are evaluated by comparing acoustic fields predicted based on the inversion to acoustic fields measured during a different experiment conducted in the same region. The model is also compared to seismic reflection survey data collected during SW06. Resolution and variance estimated for the inversion results are also presented.
Keywords :
acoustic wave velocity; inverse problems; oceanographic techniques; sediments; underwater acoustic propagation; 2006 Shallow Water Experiment; AD 2006; Hudson Canyon; New Jersey coast; SW06; modal dispersion; modal dispersion data; modal travel-time data; perturbative inversion method; range-dependent inverse; range-dependent sediment compressional-wave-speed profiles; seismic reflection survey data; synthetic data; Acoustic measurements; Acoustic propagation; Apertures; Eigenvalues and eigenfunctions; Oceans; Sea measurements; Sediments; Seismic measurements; Time frequency analysis; Tomography; Geoacoustic inversion; modal dispersion; range-dependent inverse;
Journal_Title :
Oceanic Engineering, IEEE Journal of
DOI :
10.1109/JOE.2009.2039377