Slip weakening in rocks and analog materials at co-seismic slip rates
نویسندگان
چکیده
Determination of co-seismic slip resistance in earth faults is critical for understanding the magnitude of shear-stress reduction and hence the near-fault acceleration that can occur during earthquakes. Also, knowledge of shear resistance dependency on slip velocity, slip distance, normal stress, and surface roughness is fundamental information for understanding earthquake physics and the energy released during such events. In the present study, plate-impact pressureshear friction experiments are employed to investigate the frictional resistance in fine-grained Arkansas novaculite rock and an analog material (soda-lime glass), under relevant interfacial conditions. The results of the experiments indicate that a wide range of frictional slip conditions can exist during a single slip event. These conditions range from initial no-slip followed by slip weakening, strengthening, and seizure at the frictional interface. For the case of glass vs. glass experiments, the first slip-weakening, with m in the range of 0.4–0.2, is understood to be most likely due to thermal-induced flash heating and incipient melting at asperity junctions, while the slip-strengthening, with m in the range of 0.1–0.4, is understood to be a result of coalescence and solidification of local melt patches. For the case of the fine grain Arkansas Novaculite rocks a similar range of slip conditions is observed. r 2007 Elsevier Ltd. All rights reserved.
منابع مشابه
Laboratory observations of transient frictional slip in rock–analog materials at co-seismic slip rates and rapid changes in normal stress
In most cases authors are permitted to post their version of the article (e.g. in Word or Tex form) to their personal website or institutional repository. Authors requiring further information regarding Elsevier's archiving and manuscript policies are encouraged to visit: a b s t r a c t a r t i c l e i n f o Keywords: Rock–analog materials Co-seismic slip rates Rate weakening and strengthening...
متن کاملDislocation Motion and the Microphysics of Flash Heating and Weakening of Faults during Earthquakes
Earthquakes are the result of slip along faults and are due to the decrease of rock frictional strength (dynamic weakening) with increasing slip and slip rate. Friction experiments simulating the abrupt accelerations (>>10 m/s2), slip rates (~1 m/s), and normal stresses (>>10 MPa) expected at the passage of the earthquake rupture along the front of fault patches, measured large fault dynamic we...
متن کاملSeismic Fault Rheology and Earthquake Dynamics
As preparation for this Dahlem Workshop on The Dynamics of Fault Zones, specifically on the subtopic “Rheology of Fault Rocks and Their Surroundings,” we addressed critical research issues for understanding the seismic response of fault zones in terms of the constitutive response of fault materials. This requires new concepts and a host of new observations and experiments to document material r...
متن کاملIntegrating field observations and fracture mechanics models to constrain seismic source parameters for ancient earthquakes
Most of our understanding of earthquake rupture comes from interpretation of strongground-motion seismograms; however, near-rupture-tip fields of stress and particle motions are difficult to resolve. In particular, the decay of frictional resistance from a peak value at the leading tip of the rupture to a residual kinetic value and subsequent healing characterizes the earthquake process, yet th...
متن کاملHarvard University -- Solid Earth Physics Seminar Thermal pressurization of pore fluid - mechanism for seismic and aseismic self-healing fault slip
There are several lines of evidence that suggest that thermal pressurization (TP) of pore fluid within a low-permeability fault core may play the key role in the development of earthquake slip. To elucidate effects of TP on spontaneous fault slip, I consider solutions for a steadily propagating slip pulse on a fault with a constant sliding friction, the level of which may reflect other thermall...
متن کامل