Mechanical Response of Castlegate Sandstone under Hydrostatic Cyclic Loading

Author:

Kibikas William M.12ORCID,Bauer Stephen J.2ORCID

Affiliation:

1. School of Geosciences, University of Oklahoma, 100 E. Boyd St., Norman, OK 73019, USA

2. Sandia National Laboratories, Geothermal Department, MS 1033 PO Box 5800, Albuquerque, NM 87185, USA

Abstract

The stress history of rocks in the subsurface affects their mechanical and petrophysical properties. Rocks can often experience repeated cycles of loading and unloading due to fluid pressure fluctuations, which will lead to different mechanical behavior from static conditions. This is of importance for several geophysical and industrial applications, for example, wastewater injection and reservoir storage wells, which generate repeated stress perturbations. Laboratory experiments were conducted with Castlegate sandstone to observe the effects of different cyclic pressure loading conditions on a common reservoir analogue. Each sample was hydrostatically loaded in a triaxial cell to a low effective confining pressure, and either pore pressure or confining pressure was cycled at different rates over the course of a few weeks. Fluid permeability was measured during initial loading and periodically between stress cycles. Samples that undergo cyclic loading experience significantly more inelastic (nonrecoverable) strain compared to samples tested without cyclic hydrostatic loading. Permeability decreases rapidly for all tests during the first few days of testing, but the decrease and variability of permeability after this depend upon the loading conditions of each test. Cycling conditions do affect the mechanical behavior; the elastic moduli decrease with the increasing loading rate and stress cycling. The degree of volumetric strain induced by stress cycles is the major control on permeability change in the sandstones, with less compaction leading to more variation from measurement to measurement. The data indicate that cyclic loading degrades permeability and porosity more than static conditions over a similar period, but the petrophysical properties are dictated more by the hydrostatic loading rate rather than the total length of time stress cycling is imposed.

Funder

Sandia National Laboratories

Publisher

Hindawi Limited

Subject

General Earth and Planetary Sciences

Reference34 articles.

1. Crustal stress, faulting and fluid flow

2. The role of stress transfer in earthquake occurrence

3. The in-situ stress response of reservoirs to pressure reduction followed by pressure increase: depletion and rebound stress paths from two case studies;J. M. Davison

4. Deep injection disposal: environmental and petroleum geomechanics;M. B. Dusseault

5. Geomechanical Influences in Water Injection Projects: an Overview

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