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Wednesday, July 15, 2020 | History

3 edition of Propagation of sound in the ocean. found in the catalog.

Propagation of sound in the ocean.

J. Lamar Worzel

Propagation of sound in the ocean.

Explosion sounds in shallow water

by J. Lamar Worzel

  • 298 Want to read
  • 17 Currently reading

Published by Geological Society of America] in [New York .
Written in English

    Subjects:
  • Underwater acoustics,
  • Explosions

  • Edition Notes

    Other titlesExplosion sounds in shallow water., Theory of propagation of explosive sound in shallow water., Long-range sound transmission.
    Statementby J. Lamar Worzel and Maurice Ewing. Theory of propagation of explosive sound in shallow water, by C. L. Pekeris. Long-range sound tramsmission, by Maurice Ewing and J. Lamar Worzel.
    ContributionsPekeris, Chaim Leib, 1908-, Ewing, W. Maurice 1906-
    Classifications
    LC ClassificationsQC233 .W6
    The Physical Object
    Pagination1 v. (various pagings)
    ID Numbers
    Open LibraryOL195172M
    LC Control Numbera 49004933
    OCLC/WorldCa542421

    Get this from a library! Propagation of sound in the ocean. Explosion sounds in shallow water,. [J Lamar Worzel; C L Pekeris]. - Robert J. Urick - For his book "Principles of Underwater Sound" and his many experiments on sound propagation, scattering, reverberation, and ambient noise. - Ivan Tolstoy - For innovative studies in oceanic, atmospheric and seismic wave propagation.

    Fundamentals of Acoustical Oceanography explains principles of underwater sound propagation, and describes how both actively probing sonars and passively listening hydrophones can reveal what the eye cannot see over vast ranges of the turbid ocean. Additional Physical Format: Online version: Worzel, J. Lamar (John Lamar), Propagation of sound in the ocean. [New York, Geological Society of America]

    ESOMM - International Meeting on the Effects of Sound in the Ocean on Marine Mammals 6th 5 / 75 1 Introduction This 6th International Meeting on the Effects of Sound in the Ocean on Marine Mammals (ESOMM) in The Hague, the Netherlands, brings together scientists that Sound Source Characterisation & Propagation - Break - JIP Closing. There are two types of inhomogeneities in the ocean, regular and random. The latter are produced by turbulence, internal waves, mesoscale eddies, etc. They cause the scattering of sound and fluctuations of its intensity, reduce coherence of sound waves and change their frequency by: 8.


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Propagation of sound in the ocean by J. Lamar Worzel Download PDF EPUB FB2

Propagation of Sound in the Ocean Vinyl Bound – January 1, See all formats and editions Hide other formats and editions. Price New from Used from Vinyl Bound, "Please retry" $ $ — Vinyl Bound $ 3 New from $ Manufacturer: Acoustical Society of America.

Propagation of Sound in the Ocean Hardcover – January 1, by C.L. Pekeris J. Lamar Worzel, Maurice Ewing (Author)Author: C.L. Pekeris J. Lamar Worzel, Maurice Ewing. All Books; By Publisher. American Association of Petroleum Geologists; Clay Minerals Society; Geological Society of America; Geological Society of London; Gulf PetroLink; Mineralogical.

Propagation of Sound in the Ocean: Explosion Sounds in Shallow Water (Geological Society of America, Memoir 27) by J. Lamar Worzel and a great selection of related books, art and collectibles available now at Sound Propagation through the Stochastic Ocean provides a comprehensive treatment of developments in the field of statistical ocean acoustics over the last 35 years.

This will be of fundamental interest to oceanographers, marine biologists, geophysicists, engineers, applied mathematicians, and physicists. This book provides an up-to-date introduction to the theory of sound propagation in the ocean.

The text treats both ray and wave propagation and pays considerable attention to stochastic problems such as the scattering of sound at rough surfaces and random by: Propagation of Sound in the Ocean THEORY OF PROPAGATION OF EXPLOSIVE SOUND IN SHALLOW WATER Work Flow for Geological Characterization and Modeling of the Albian Carbonate Reservoirs from Offshore Campos Basin, Brazil.

How is sound used to measure currents in the ocean. How is sound used to measure waves in the surf zone. How is sound used to measure the upper ocean. How is sound used to help make long-term measurements of the ocean.

Examine the Earth. How is sound used to study the Earth’s history. How is sound used to explore for oil and gas. How is sound. The propagation of the actual sound wave can be faster or slower depending on the temperature, pressure or type of medium the waves are traveling through.

Since air is a nearly perfect gas at standard temperature and pressure (STP), air pressure is not usually a factor with the velocity of sound. What is Sound. Ocean acoustics is the study of sound and its behavior in the sea. When underwater objects vibrate, they create sound-pressure waves that alternately compress and decompress the water molecules as the sound wave travels through the sea.

Sound waves radiate in all directions away from the source like ripples on the surface of a pond. This book provides an up-to-date introduction to the theory of sound propagation in the ocean.

The text treats both ray and wave propagation and pays considerable attention to stochastic problems such as the scattering of sound at rough surfaces and random inhomogeneities.

Propagation of Sound in the Ocean Regional seismic-wave propagation from the M 23 AugustMineral, Virginia, earthquake The Mineral, Virginia, Earthquake, and Its Significance for Seismic Hazards in Eastern North America.

Propagation of Sound in the Ocean LONG-RANGE SOUND TRANSMISSION Paleogeography of the Cenozoic Passive Margin of Northeastern South America in Eastern Venezuela and Trinidad from Seismic Data and Well Information.

Sound Propagation through the Stochastic Ocean provides a comprehensive treatment of developments in the field of statistical ocean acoustics over the last 35 years. This will be of fundamental interest to oceanographers, marine biologists, geophysicists, engineers, applied mathematicians, and by: 9.

Sound propagates extremely well in the ocean: inexpensive sound projectors and sensors can be used to transmit and receive pulses around the entire globe. Similarly, the rumble and hum of ships acts like an acoustic beacon that allows them to be heard and tracked at long by: 2.

Propagation of Sound in the Ocean. William A. Kuperman. Marine Physical Laboratory, University of California, San Diego, La Jolla, CAUSA Qualitative Description of Ocean Sound Propagation Paths.

Sound Propagation Models. Quantitative Description of Propagation. Appendix: Units. References. Citing by: 1. This book provides an up-to-date introduction to the theory of sound propagation in the ocean.

The text treats both ray and wave propagation and pays considerable attention to stochastic problems such as the scattering of sound at rough surfaces and random inhomogeneities. Ocean Acoustic Propagation by Finite Difference Methods To model sound transmission at shorter ranges, a wide-angle capability is most desirable.

A concise guide to the theory and application of numerical methods for predicting ocean acoustic propagation, also providing an introduction to numerical methods, with an overview of those. In June ofmy book entitled Sound Propagation through the Stochastic Ocean (Colosi, 3.

Colosi, J. Sound Propagation through the Stochastic Ocean (Cambridge University Press, Cambridge).) was reviewed in the Journal of the Acoustical Society of America (JASA) (Henyey, Henyey, F.

().Author: John A. Colosi. long range propagation of sound in the deep ocean, and that is the subject on which I focus myattention. The major outlines of the subject are established by the sound-absorbing properties of sea water and the manner in which the sound-velocity structure of the ocean affects by:.

This chapter introduces the wave equation and the Helmholtz equation, along with plane, cylindrical, and spherical waves, for sound propagation in a lossless fluid. The concept of sound absorption is discussed in the context of a viscous fluid, in which the propagation is governed by Stokes' equation.Computational Ocean Acoustics conveys the state-of-the-art of numerical modeling techniques for graduate and undergraduate students of acoustics, geology and geophysics, applied mathematics, and ocean engineering.

It is also an essential addition to the libraries of ocean research institutions that use propagation by: Temperature and sound velocity profiles.

The speed of sound in the ocean is a function of temperature, pressure and salinity. \(S\) = salinity in parts per thousand. Typical ocean salinity, \(S\), is fairly constant at 35 ppt and so the sound speed formula reduces to a function of temperature and depth.