A versatile facility for laboratory studies of viscoelastic and poroelastic behaviour of rocks

Loading...
Thumbnail Image

Authors

Jackson, Ian
Schijns, Heather
Schmitt, Douglas R.
Mu, Junjie
Delmenico, Alison

Journal Title

Journal ISSN

Volume Title

Publisher

American Institute of Physics (AIP)

Abstract

Novel laboratory equipment has been modified to allow both torsional and flexural oscillation measurements at sub-microstrain amplitudes, thereby providing seismic-frequency constraints on both the shear and compressional wave properties of cylindrical rock specimens within the linear regime. The new flexural mode capability has been tested on experimental assemblies containing fused silica control specimens. Close consistency between the experimental data and the results of numerical modelling with both finite-difference and finite-element methods demonstrates the viability of the new technique. The capability to perform such measurements under conditions of independently controlled confining and pore-fluid pressure, with emerging strategies for distinguishing between local (squirt) and global (specimen-wide) fluid flow, will have particular application to the study of frequency-dependent seismic properties expected of cracked and fluid-saturated rocks of the Earth's upper crust.

Description

Citation

Source

Review of Scientific Instruments

Book Title

Entity type

Access Statement

License Rights

Restricted until

Downloads