Related Experiment Video
Updated: Jun 2, 2026

Fluid-cell Raman Spectroscopy for operando Studies of Reaction and Transport Phenomena during Silicate Glass Corrosion
Published on: May 9, 2025
Sound speed in water-saturated glass beads as a function of frequency and porosity
Theodore F Argo1, Matthew D Guild, Preston S Wilson
1Department of Mechanical Engineering and Applied Research Laboratories, The University of Texas, Austin, Texas 78713-8029, USA. targo@mail.utexas.edu
Abstract:
Sound propagation in water-saturated granular sediments is known to depend on the sediment porosity, but few data in the literature address both the frequency and porosity dependency. To begin to address this deficiency, a fluidized bed technique was used to control the porosity of an artificial sediment composed of glass spheres of 265 μm diameter. Time-of-flight measurements and the Fourier phase technique were utilized to determine the sound speed for frequencies from 300 to 800 kHz and porosities from 0.37 to 0.43. A Biot-based model qualitatively describes the porosity dependence.
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