Fault rocks and fault mechanisms
- 1 March 1977
- journal article
- Published by Geological Society of London in Journal of the Geological Society
- Vol. 133 (3) , 191-213
- https://doi.org/10.1144/gsjgs.133.3.0191
Abstract
Physical factors likely to affect the genesis of the various fault rocks—frictional properties, temperature, effective stress normal to the fault and differential stress—are examined in relation to the energy budget of fault zones, the main velocity modes of faulting and the type of faulting, whether thrust, wrench, or normal. In a conceptual model of a major fault zone cutting crystalline quartzo-feldspathic crust, a zone of elastico-frictional (EF) behaviour generating random-fabric fault rocks (gouge—breccia—cataclasite series—pseudotachylyte) overlies a region where quasi-plastic (QP) processes of rock deformation operate in ductile shear zones with the production of mylonite series rocks possessing strong tectonite fabrics. In some cases, fault rocks developed by transient seismic faulting can be distinguished from those generated by slow aseismic shear. Random-fabric fault rocks may form as a result of seismic faulting within the ductile shear zones from time to time, but tend to be obliterated by continued shearing. Resistance to shear within the fault zone reaches a peak value (greatest for thrusts and least for normal faults) around the EF/QP transition level, which for normal geothermal gradients and an adequate supply of water, occurs at depths of 10–15 km.This publication has 46 references indexed in Scilit:
- The influence of interstitial water on the rheological behaviour of calcite rocksPublished by Elsevier ,2003
- The prograde microfabric in a deformed quartzite sequence, Mount Isa, AustraliaPublished by Elsevier ,2003
- Large-scale Laxfordian structures of the outer hebrides in relation to those of the Scottish mainlandPublished by Elsevier ,2003
- Diffusionless dilatancy model for earthquake precursorsGeophysical Research Letters, 1974
- Friction in faulted rock at high temperature and pressureTectonophysics, 1974
- Intraplate Earthquakes, Lithospheric Stresses and the Driving Mechanism of Plate TectonicsNature, 1973
- Fracture and flow of rocksTectonophysics, 1972
- Mylonites, Cataclasites, and Associated Rocks along the Alpine Fault, South Island, New ZealandNew Zealand Journal of Geology and Geophysics, 1964
- Mylonites from the San Andreas fault zoneAmerican Journal of Science, 1935
- The Geologic Rôle of DilatancyThe Journal of Geology, 1925