Title of article :
Elastic strain energy release from fragmenting grains: Effects on fault rupture
Author/Authors :
Davies، نويسنده , , Timothy R.H. and McSaveney، نويسنده , , Mauri J. and Boulton، نويسنده , , Carolyn J.، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2012
Pages :
13
From page :
265
To page :
277
Abstract :
As a confined static grain mass is increasingly stressed, elastic strain energy accumulates in the grains; when local stress somewhere exceeds grain strength, grain breakage radiates this stored energy to the surrounding grains as a brief high-intensity pulse of pressure energy. Local grain stresses in a stressed static fault-zone follow a known probability density distribution in which the maximum local grain stress resulting from a given applied stress increases with fault-plane area. Tectonic stress buildup on a fault increases the probability of local stresses sufficient to break grains. Brittle failure of a grain releases strain energy that can trigger cascading failure of a large fault at relatively low applied stress, culminating in fault rupture, if the fault strength distribution is sufficiently homogeneous. Such ruptures can occur at lower driving stresses in larger faults. This process correctly explains the magnitude of the failure stress of the peninsula segment of the San Andreas fault, so may significantly affect fault rupture strength. Grain fragmentation also plays a significant role in dynamic fault friction; in dense comminuting granular flows, grain fragmentation causes continuous recycling of elastic-strain energy. During cataclastic fault slip, widespread grain comminution thus generates and maintains an intense high-frequency elastic energy field that causes dynamic weakness. This process is sufficiently powerful to explain the magnitude of the dynamic slip resistance of the San Andreas fault.
Keywords :
Static rupture strength , Weak seismic faults , Slip resistance , Gouge comminution , elastic strain energy
Journal title :
Journal of Structural Geology
Serial Year :
2012
Journal title :
Journal of Structural Geology
Record number :
2227467
Link To Document :
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