Experimental Detection of a Slow Acoustic Wave in Sediment at Shallow Grazing Angles: Bottom Penetration a Shallow Grazing Angles.

Abstract

Following recent experimental results at sea (N.P. Chotiros, Proceedings of Ocean '89) that suggest the existence of a previously undetected type of acoustic wave in sandy sediments, an experiment was designed to detect and measure the speed of acoustic waves in an isolated environment. The experiment was conducted in a laboratory tank containing 1 m of unwashed river sediment under a 3 m water column. Observations were made of the travel time and attenuation of a pulse from an acoustic source located above the water-sediment interface to a set of probes below the interface. It was observed that at normal incidence the pulse traveled at about 1675 m/s, while at shallow grazing angles the pulse traveled through the sediment at close to 1200 m/s. An interesting possible explanation exists in the Biot theory for acoustic propagation through fluid-saturated porous media, which predicts a slow acoustic wave in porous materials.

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Document Details

Document Type
Technical Report
Publication Date
May 24, 1991
Accession Number
ADA240870

Entities

People

  • Frank A. Boyle
  • Nicholas P. Chotiros

Organizations

  • University of Texas at Austin

Tags

Communities of Interest

  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Acoustic Propagation
  • Acoustic Properties
  • Acoustic Signals
  • Acoustic Waves
  • Backscattering
  • Bulk Modulus
  • Coefficients
  • Frequency
  • Grazing
  • Grazing Angles
  • Materials
  • Measurement
  • Porous Materials
  • Reflection
  • Secondary Waves
  • Travel Time
  • Waves

Readers

  • Coastal Oceanography
  • Electromagnetic Wave Scattering and Antenna Radiation Engineering
  • Oceanography.