HR: 1300h
AN: OS52C-02 [PDF]
TI: Acoustic Bottom Characterization Using a Military Mine-Hunting Sonar
AU: Avera, W
EM: avera@nrlssc.navy.mil
AF: Naval Research Laboratory, Bldg. 1005, SSC, MS 39529-5004
United States
AU: * Bentrem, F
EM: fbentrem@nrlssc.navy.mil
AF: Naval Research Laboratory, Bldg. 1005, SSC, MS 39529-5004
United States
AU: Bibee, D
EM: bibee@nrlssc.navy.mil
AF: Naval Research Laboratory, Bldg. 1005, SSC, MS 39529-5004
United States
AU: Harris, M
EM: mike.harris@nrlssc.navy.mil
AF: Naval Research Laboratory, Bldg. 1005, SSC, MS 39529-5004
United States
AB:
Because the AQS-20's Volume Search Sonar (VSS) contains multiple beams at a number of grazing angles, the NRL Sediment
Mapping System can be used to invert the backscattered acoustic signal for seafloor sediment parameters. Backscattering
strength is computed for each beam and averaged over several pings. A physical backscatter model that predicts backscattering
strength as a function of grazing angle is used with a simulated annealing inversion to find the model parameters. This
paper discusses the inversion results using VSS data from a test off the coast of Panama City, Florida. The analysis results
include sediment-water density ratio, bottom relief spectral strength (roughness parameter), and a volume interaction
parameter. From these model parameters, we estimate mean grain size and root-mean square interface roughness. The
sediment-water density ratios from the inversion are compared with the solutions from another NRL bottom classification
system using a normal incidence impedance-based inversion technique.
DE: 3020 Littoral processes
DE: 4546 Nearshore processes
SC: Ocean Sciences [OS]
MN: 2004 Ocean Sciences Meeting