Title of article :
A Constitutive Scaling Law for Shear Rupture that is Inherently Scale-dependent, and Physical Scaling of Nucleation Time to Critical Point
Author/Authors :
Mitiyasu Ohnaka، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2004
Pages :
15
From page :
1915
To page :
1929
Abstract :
It is shown that the rupture nucleation length increases up to the critical length with time according to a power law, and that the accelerating phase of nucleation leading up to the critical point is scaled in the framework of fracture mechanics based on slip-dependent constitutive formulation. Geometric irregularity of the rupturing surfaces plays a fundamental role in scaling the accelerating phase of nucleation up to the critical point. A power-law scaling relation between the rupture growth length and the nucleation time to the critical point is derived from theoretical consideration based on laboratory data. This power-law scaling relation has no singularity, and hence it may be useful for the predictive purpose of an imminent, large earthquake.
Keywords :
accelerating phase of nucleation , Power law , universal scaling relation. , Inhomogeneous fault , Characteristic length
Journal title :
Pure and Applied Geophysics
Serial Year :
2004
Journal title :
Pure and Applied Geophysics
Record number :
429744
Link To Document :
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