DocumentCode :
3601075
Title :
Ray Theory Results and Ray Wavefront Diagrams for the Hyperbolic Cosine Propagation Sound-Speed Profile
Author :
Barnard, Thomas E. ; Klein, Franz J. ; Resca, Lorenzo
Author_Institution :
Vitreous State Lab., Catholic Univ. of America, Washington, DC, USA
Volume :
40
Issue :
4
fYear :
2015
Firstpage :
938
Lastpage :
946
Abstract :
In this paper, we provide a complete geometrical treatment of classical rays emanating from an underwater point source and propagating in an unbounded medium where the speed of sound has a hyperbolic cosine dependence on the depth coordinate (z). General results are derived exclusively from Snell´s law and are not limited to the case in which the ray emitting source is located at a point on the minimum propagation speed plane. Explicit relations are provided for the following: 1) the ray depth coordinate (z) expressed as a function of the ray horizontal range (ρ) and the ray source angle (θ0); 2) all the relations among the ray source angle (θ0), the ray receiver angle (θ), and the travel time (τ) to reach an arbitrary position of the receiver from an arbitrary position of the source; and 3) the classical wavefront coordinates (ρ,z) along a ray expressed as a function of the ray source angle (θ0) and travel time (τ). From the wavefront coordinates (ρ,z), we construct and display ray/wavefront diagrams for a varying source depth (z0) relative to the minimum propagation speed plane. We also derive the time-averaged acoustic energy flux carried along classical ray tubes.
Keywords :
hyperbolic equations; oceanography; underwater acoustic propagation; Snell law; classical ray tube; classical wavefront coordinate; geometrical treatment; hyperbolic cosine propagation; minimum propagation speed plane; ray depth coordinate; ray horizontal range function; ray receiver angle; ray source angle function; ray theory; ray wavefront diagram; sound-speed profile; time-averaged acoustic energy flux; underwater point source; Acoustics; Approximation methods; Electron tubes; Equations; Oceans; Position measurement; Receivers; Hyperbolic cosine sound-speed profile; mathematical theory of wave propagation; ray theory;
fLanguage :
English
Journal_Title :
Oceanic Engineering, IEEE Journal of
Publisher :
ieee
ISSN :
0364-9059
Type :
jour
DOI :
10.1109/JOE.2014.2377497
Filename :
7001264
Link To Document :
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