Published 1981 | Version v1
Journal article

Thermomechanical stability of underground installations: significance of the thermophysical properties of rocks

Creators

  • 1. Department of Energy, Mines and Resources, Ottawa, Ontario (Canada)

Description

When heat is generated in an underground installation, there are several interdependent factors-such as the rate of heat dissipation, changes in this rate with temperature, or the effects of thermal gradients and thermal expansivities-which influence the stability of the rock mass. To evaluate the thermomechanical stability of a proposed site for an underground nuclear power station, rock specimens from a 300 m deep drill core were obtained, and their thermal diffusivity and linear thermal expansion were measured between 250C and 5000C. The thermal conductivity was also measured, in the temperature range 100-5000C. Under normal operating conditions, heat transfer to the surface of the rock mass surrounding the power installation would be low. However, in some contingencies, this heat load could become large. The results are discussed from the point of view of the stability of a rock enclosure at higher heat fluxes; they indicate that the rocks studied would, in general, not be suitable as an unprotected wall for containment of such a heat source. (author)

Additional details

Publishing Information

Journal Title
High Temp. - High Pressures
Journal Volume
13
Journal Issue
1
Series
High Temp. - High Pressures.
Journal Page Range
89-96
ISSN
0018-1544

Conference

Title
7. European thermophysical properties conference.
Dates
30 Jun - 4 Jul 1980.
Place
Antwerp, Belgium.