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1.
J Acoust Soc Am ; 143(3): EL174, 2018 03.
Article in English | MEDLINE | ID: mdl-29604691

ABSTRACT

This work introduces a description of the complex upwelling regime off the Cabo Frio region in Brazil and shows that ocean modeling, based on the feature-oriented regional modeling system (FORMS) technique, can produce reliable predictions of sound speed fields for the corresponding shallow water environment. This work also shows, through the development of simulations, that the upwelling regime can be responsible for the creation of shadow coastal zones, in which the detection probability is too low for an acoustic source to be detected. The development of the FORMS technique and its validation with real data, for the particular region of coastal upwelling off Cabo Frio, reveals the possibility of a sustainable and reliable forecast system for the corresponding (variable in space and time) underwater acoustic environment.

2.
J Acoust Soc Am ; 132(2): 709-17, 2012 Aug.
Article in English | MEDLINE | ID: mdl-22894193

ABSTRACT

Acoustic predictions of the recently developed traceo ray model, which accounts for bottom shear properties, are benchmarked against tank experimental data from the EPEE-1 and EPEE-2 (Elastic Parabolic Equation Experiment) experiments. Both experiments are representative of signal propagation in a Pekeris-like shallow-water waveguide over a non-flat isotropic elastic bottom, where significant interaction of the signal with the bottom can be expected. The benchmarks show, in particular, that the ray model can be as accurate as a parabolic approximation model benchmarked in similar conditions. The results of benchmarking are important, on one side, as a preliminary experimental validation of the model and, on the other side, demonstrates the reliability of the ray approach for seismo-acoustic applications.


Subject(s)
Acoustics , Models, Theoretical , Signal Processing, Computer-Assisted , Sound , Water , Acoustics/instrumentation , Computer Simulation , Elasticity , Equipment Design , Geologic Sediments , Motion , Numerical Analysis, Computer-Assisted , Polyvinyl Chloride , Pressure , Reproducibility of Results , Sound Spectrography , Time Factors
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