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Multipath correlation at mid-frequency in a convergence zone
F Hunter Akins1, William S Hodgkiss1
1Scripps Institution of Oceanography, University of California San Diego, La Jolla, California 92093, USA.
Convergence zone (CZ) propagation shows correlated multipath arrivals due to limited internal wave scattering. This study confirms theoretical predictions of correlated eigenrays in underwater acoustics.
Area of Science:
- Oceanography
- Acoustics
- Wave Propagation
Background:
- Convergence zone (CZ) propagation involves a limited number of eigenrays with specific turning points.
- The geometry of CZ propagation results in minimal random internal wave scattering over its ~60 km range.
- This suggests potential correlation of CZ multipath over limited observation intervals.
Purpose of the Study:
- To apply wave propagation theory in random media to CZ propagation.
- To predict the correlation of CZ eigenrays within a Garrett-Munk internal wave field over a finite observation interval.
- To compare theoretical predictions with experimental data from the Philippine Sea.
Main Methods:
- Utilized the theory of wave propagation in random media.
- Applied the Garrett-Munk internal wave model.
- Estimated complex amplitudes of multipath arrivals using beamforming with a vertical line array.
- Analyzed 5.5 kHz sinusoidal transmissions.
Main Results:
- Theoretical predictions indicated correlated multipath over observation intervals of 100–200 seconds.
- Experimental data from the Philippine Sea showed significant correlation of multipath arrivals over approximately 27 seconds.
- The observed correlation in experimental data aligns with the theoretical framework.
Conclusions:
- The study provides evidence supporting the hypothesis of correlated multipath in CZ propagation.
- Experimental results validate theoretical predictions of eigenray correlation over finite observation intervals.
- Findings contribute to understanding underwater acoustic propagation in dynamic ocean environments.
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