Rupture speed dependence on initial stress profiles: Insights from glacier and laboratory stick-slip

Citation:

Jacob I Walter, Svetlizky, Ilya , Fineberg, Jay , Brodsky, Emily E, Tulaczyk, Slawek , C. Barcheck, Grace , and Carter, Sasha P. 2015. “Rupture Speed Dependence On Initial Stress Profiles: Insights From Glacier And Laboratory Stick-Slip”. Earth And Planetary Science Letters, 411, Pp. 112–120. doi:10.1016/j.epsl.2014.11.025.

Abstract:

Slow slip events are now well-established in fault and glacier systems, though the processes controlling slow rupture remain poorly understood. The Whillans Ice Plain provides a window into these processes through bi-daily stick-slip seismic events that displace an ice mass over 100 km long with a variety of rupture speeds observed at a single location. We compare the glacier events with laboratory experiments that have analogous loading conditions. Both systems exhibit average rupture velocities that increase systematically with the pre-rupture stresses, with local rupture velocities exhibiting large variability that correlates well with local interfacial stresses. The slip events in both cases are not time-predictable, but clearly slip-predictable. Local pre-stress may control rupture behavior in a range of frictional failure events, including earthquakes.

Notes:

Publisher Copyright: © 2014 The Authors.
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