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  2. SOFAR channel - Wikipedia

    en.wikipedia.org/wiki/SOFAR_channel

    At both Perth and Bermuda the sound channel axis occurs at a depth of around 1,200 m (3,937 ft). Where the path meets the Antarctic Convergence at 52º south there is no deep sound channel but a 30 m (98 ft) in depth surface duct and a shallow sound channel at 200 m (656 ft). As the path turns northward, a station at 43º south, 16º east ...

  3. Sound speed profile - Wikipedia

    en.wikipedia.org/wiki/Sound_speed_profile

    A sound speed profile shows the speed of sound in water at different vertical levels. It has two general representations: tabular form, with pairs of columns corresponding to ocean depth and the speed of sound at that depth, respectively. a plot of the speed of sound in the ocean as a function of depth, where the vertical axis corresponds to ...

  4. RAFOS float - Wikipedia

    en.wikipedia.org/wiki/RAFOS_float

    The SOFAR channel (short for Sound Fixing and Ranging channel), or deep sound channel (DSC), is a horizontal layer of water in the ocean at which depth the speed of sound is minimal, in average around 1200 m deep. [2] It acts as a wave-guide for sound, and low frequency sound waves within the channel may travel thousands of miles before ...

  5. Underwater acoustics - Wikipedia

    en.wikipedia.org/wiki/Underwater_acoustics

    Underwater acoustics (also known as hydroacoustics) is the study of the propagation of sound in water and the interaction of the mechanical waves that constitute sound with the water, its contents and its boundaries. The water may be in the ocean, a lake, a river or a tank. Typical frequencies associated with underwater acoustics are between 10 ...

  6. Missile Impact Location System - Wikipedia

    en.wikipedia.org/wiki/Missile_Impact_Location_System

    The BOA hydrophones were located near the deep sound channel axis and were located at Cape Hatteras, Bermuda, Eleuthera , Grand Turk, Puerto Rico, Antigua, Barbados and Ascension. [11] [note 4] In the Pacific a BOA system was installed to cover the Wake—Eniwetok—Midway impact area.

  7. Acoustic quieting - Wikipedia

    en.wikipedia.org/wiki/Acoustic_quieting

    Operating below the depth of the sound channel axis, where the speed of sound in water is the lowest, a submarine can prevent detection by surface ships, unless these ships use equipment like a towed array and/or an underwater drone to place hydrophones below the sound channel axis. Sound refraction: Just as a submarine can use refraction to ...

  8. SOSUS - Wikipedia

    en.wikipedia.org/wiki/SOSUS

    SOSUS. Sound Surveillance System (SOSUS) was the original name for a submarine detection system based on passive sonar developed by the United States Navy to track Soviet submarines. The system's true nature was classified with the name and acronym SOSUS classified as well. The unclassified name Project Caesar was used to cover the installation ...

  9. Low Frequency Analyzer and Recorder - Wikipedia

    en.wikipedia.org/wiki/Low_Frequency_Analyzer_and...

    A working model of the Low Frequency Analyzer and Recorder was delivered in May 1951 which operated with real time analysis of a frequency band of 1 to 1/2 Hz. Along with the working model was a proposal for hydrophones, cables, processing systems and beamforming so that a hydrophone array could present multiple azimuthal beams to be displayed.